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R C Simmen

Publications and source records attributed to R C Simmen.

At least 37 records · Page 2Linked to original sources

Short-term effects of exogenous estradiol-17 beta on blastocyst development during the period of elongation in swine.

Objectives were to examine the effects of a single dose (4 mg) of estradiol-17 beta (E2) on blastocyst development around the period of elongation. Proestrus gilts were induced to ovulate with 750 IU of hCG and were mated before ovulation (normal mating, 24 to 32 h post-hCG) or after ovulation had begun (delayed mating, 43 h post-hCG). This difference in time of mating has been demonstrated to result in approximately a 7-h difference in time of blastocyst elongation. Normally and delay-mated gilts were ovariohysterectomized at 278 h post-hCG or injected with E2 or vehicle (corn oil) at 278 h and then ovariohysterectomized at 290 h post-hCG (five or six gilts per group). Blastocyst size was measured and concentrations of E2, retinol, uteroferrin, insulin-like growth factor-I (IGF-I), uterine plasmin/trypsin inhibitor (UPTI) and protein in uterine flushings were quantified. Blastocyst size and components of uterine flushings did not differ (P > 0.05) between normally and delay-mated gilts at 278 h post-hCG. However, at 290 h post-hCG, normally mated gilts had larger (P < 0.01) blastocysts (small spheres to filamentous) and their flushings tended to contain less (P < 0.07) amounts of retinol than those of delay-mated gilts whose blastocysts ranged from small spheres to ovoidals. Normally mated gilts receiving E2 at 278 h had smaller (P < 0.01) blastocysts and less (P < 0.05) amounts of retinol at 290 h post-hCG than gilts receiving vehicle. Conversely, delay-mated gilts treated with E2 or vehicle did not differ (P > 0.05) in blastocyst size and amounts of components of uterine flushings at 290 h post-hCG. Normally mated gilts treated with vehicle had litters in the process of elongating at 290 h post-hCG. Mean blastocyst size (P < 0.001) and amounts of components of uterine flushings (except for IGF-I) in these gilts were greater (P < 0.05, UPTI = 0.06) than in normally mated gilts at 278 h post-hCG, whose blastocysts were spherical. Among gilts not treated with E2 (278 h and 290 h pooled), mean blastocyst size was positively correlated (P < 0.05) with amounts of retinol, E2, uteroferrin and total protein. Results indicated that a single dose of E2 given before elongation altered blastocyst development depending on how close blastocysts were to onset of elongation at the time of E2 treatment.

Acid Phosphatase↗

A developmental switch in expression from blastocyst to endometrial/placental-type cytochrome P450 aromatase genes in the pig and horse.

Pig blastocysts exhibit a transient period of estrogen production at periimplantation, with a second, more sustained period of estrogen synthesis occurring in endometrium and placenta at later pregnancy. Previously we reported the isolation of cDNA clones encoding a novel isoform of cytochrome P450 aromatase (the terminal enzyme in the estrogen biosynthetic pathway) from porcine periimplantation blastocysts. The present study investigated pregnancy-associated expression, in blastocysts and maternal reproductive tract tissues of this and an additional mRNA transcript encoding a distinct P450 aromatase isoform. Restriction endonuclease and nucleotide sequence analyses of 44 cDNA clones demonstrated that the major aromatase mRNA in periimplantation blastocysts and early-pregnancy endometrium and placenta (blastocyst-type) differed in sequence from the major aromatase mRNA expressed in endometrium and placenta at midpregnancy (endometrial-type). The deduced blastocyst and endometrial aromatase isoform protein sequences had 93% similarity. A third type of aromatase mRNA, deleted in exons 4-6 sequences, also was cloned from blastocysts. This cDNA was identical in nucleotide sequence to the blastocyst full-length aromatase cDNA and specified an open reading frame of 354 amino acids for a putative aromatase-related protein containing the heme-binding domain. Expression of this shorter mRNA in blastocysts was confirmed by reverse transcription polymerase chain reaction. The 5'-untranslated exon sequences in the transcripts encoding the blastocyst-type aromatase isoform were distinct from that of the endometrial type, consistent with differential expression of multiple chromosomal genes. In periimplantation equine embryos, however, embryonic and placental 5'-untranslated exon-containing transcripts were coexpressed. Results identify an aromatase isoform expressed in the endometrium and placenta at midpregnancy, demonstrate a transition in synthesis of aromatase isoform-specific mRNAs during placental development, and suggest the preferential involvement of the blastocyst aromatase isoform in synthesis of estrogenic molecules that may function in embryo-maternal signaling at periimplantation.

Amino Acid Sequence↗

Synthesis and messenger ribonucleic acid expression of apolipoproteins E and A-I by the bovine corpus luteum during the estrous cycle and pregnancy.

In an attempt to characterize proteins secreted by the corpus luteum, explant cultures of luteal slices from cows taken on Days 3, 7, 11, 14, 17, and 19 of the estrous cycle, and Days 17, 88, 180, and > 240 of pregnancy were incubated with H-leucine for 24 h. Proteins in luteal-conditioned medium were separated by two-dimensional PAGE, transferred to polyvinylidene fluoride membrane, and subjected to N-terminal amino acid microsequencing. Microsequence analysis revealed that the bovine corpus luteum synthesized and released de novo synthesized apolipoproteins (Apo) E and A-I in culture during the estrous cycle and pregnancy. Release of Apo E was observed only on Day 3 of the estrous cycle. Release of Apo A-I was observed on Days 11, 14, 17, and 19 of the estrous cycle, and on all days of pregnancy examined. To demonstrate the presence of the appropriate mRNA and characterize the temporal relationship for these identified proteins, total RNA was isolated from corpora lutea on Days 2, 3, 7, 16, 17, and 20 of the estrous cycle, and on Days 17, 90, 170, 180, and 272 of pregnancy, and submitted to Northern and dot blot analysis. Apo E mRNA was expressed only on Days 2-3 of the estrous cycle and was not expressed on the other days of the cycle or during pregnancy. A single Apo E mRNA transcript about 1.0 kilobase (kb) in size was observed. Expression of Apo A-I mRNA was detected on all days of the estrous cycle and pregnancy examined. Apo A-I cDNA hybridized with a single mRNA transcript about 1.0 kb in size. Apo A-I mRNA levels did not differ among days of the estrous cycle, although higher levels of Apo A-I mRNA were observed during later stages of pregnancy. Serum concentrations of Apo A-I and progesterone were correlated across the estrous cycle but not during the prepartum period or after parturition. This study demonstrates for the first time that the corpus luteum synthesizes Apo E and Apo A-I and expresses their respective mRNAs. The pattern of expression of Apo E and Apo A-I mRNAs paralleled that of de novo synthesis of their respective proteins after incubation of luteal tissue with [H]leucine. The role of luteal apolipoproteins may involve an autocrine/paracrine function influencing luteal development, tissue remodeling, and steroidogenesis.

Amino Acid Sequence↗

Cell-type expression, immunolocalization, and deoxyribonucleic acid-binding activity of basic transcription element binding transcription factor, an Sp-related family member, in porcine endometrium of pregnancy.

Basic transcription element binding (BTEB) protein is a newly identified member of the C2H2 zinc finger family that also includes the transcription factors, Sp1, Sp2, Sp3, and Sp4. This family of proteins binds GC-rich motifs widely distributed in gene promoters, resulting in distinct activation or repression of transcriptional activities. Whereas Sp proteins are ubiquitously expressed, expression of BTEB appears more limited and has not been documented in the female reproductive tract of any mammalian species. This study was designed to identify and characterize the cellular distribution of BTEB in the porcine endometrium and placenta at known stages of pregnancy. Northern analysis of uterine endometrium detected BTEB mRNA that corresponds in size (5 kilobases) to that of the major BTEB transcript in rat brain. The steady-state levels of BTEB mRNA were higher (p < 0.05) in endometrium than placenta at corresponding days of pregnancy, although for each tissue, the levels did not change with pregnancy stage (p > 0.05). Luminal epithelial (LE), glandular epithelial (GE), and stromal (ST) cells isolated from pregnancy endometrium expressed the BTEB gene, but mRNA abundance varied with cell type (LE, GE > ST). Western blot analysis using an antiserum generated against the N-terminal region of a porcine BTEB fusion protein produced in Escherichia coli revealed the presence of BTEB protein only in endometrium, not in placenta. Immunohistochemical studies localized BTEB predominantly to the nuclei of endometrial GE and LE cells. Consistent with the presence of functional BTEB protein, binding to a double-stranded oligonucleotide containing multiple GC motifs was demonstrated in nuclear extracts prepared from endometrium and from endometrial LE and GE, but not ST, cells by electrophoretic mobility shift assay. These results demonstrate the preferential endometrial cell-type expression of BTEB and suggest its regulatory role in pregnancy-associated endometrial epithelial gene expression.

Animals↗

Uterine response to progesterone in prepubertal gilts.

During early pregnancy, progesterone stimulates the secretion of proteins and other molecules that support the developing conceptus. Some gilts are able to support conceptus development as early as 110 days of age. The objective of this study was to evaluate the onset of responsiveness of the prepubertal uterus to progesterone. Thirty gilts were assigned to receive 2.2 mg progesterone kg-1 body mass per day or corn oil daily for 14 days starting at 6, 46, 76, 106, and 136 days of age. Hysterectomies were performed the day after the last treatment of progesterone, and the uterine horns were weighed and flushed with sterile saline (0.85% NaCl). Recovered flushings were analysed for total luminal protein, retinol binding protein, uteroferrin, prostaglandin E and prostaglandin F. An interaction between age and progesterone occurred for uterine wet mass (P < 0.001). Progesterone did not affect the uterine mass of gilts that underwent hysterectomy at 20 days of age, but did increase the uterine mass (P < 0.05) in other age groups. Progesterone increased (P < 0.01) the amount of total luminal protein in all but the youngest gilts. An increase in the amounts of retinol binding protein and uteroferrin (P < 0.001) by progesterone was first observed in 90-day-old gilts. Prostaglandins exhibited a different age-related pattern. The amount of prostaglandin E was increased (P < 0.001) by progesterone treatment in gilts aged 90-150 days, with a greater (P < 0.05) response at 120 days than at 90 days old. The response at 150 days old decreased (P < 0.05) to that observed at day 90. The response of prostaglandin F to progesterone followed a similar age-related pattern. Therefore, uterine responsiveness to progesterone develops between 20 and 90 days after birth, and uterine mass responds earlier than the secretory responses measured in our study.

Acid Phosphatase↗

Genetic parameter estimates for serum insulin-like growth factor I concentration and performance traits in Angus beef cattle.

Data for this study were obtained from an experiment involving divergent selection for blood serum IGF-I concentration in beef cattle. Multiple trait derivative-free REML procedures were used to obtain genetic parameter estimates for IGF-I concentration at d 28, 42, and 56 of the postweaning period and for mean IGF-I concentration, as well as for weights and gains. Included in the analysis were 1,563 animals in the A-1 matrix, 731 of which had valid records for mean IGF-I concentration. Direct heritabilities (hd2) were .42 +/- .13, .53 +/- .15, .71 +/- .16, and .48 +/- .13 for IGF-I at d 28, 42, and 56 of the postweaning period and for mean IGF-I, respectively. Heritability of maternal genetic effects (hm2) ranged from .02 to .12, whereas the proportion of the total variance due to the maternal permanent environmental effect (c2) was essentially zero for all measures of IGF-I. Genetic correlations of IGF-I with weaning and postweaning weights and with postweaning weight gain ranged from -.21 to -.54 and averaged -.38. The environmental correlation between IGF-I and performance traits varied from .10 to .35 and averaged .22. Phenotypic correlations of IGF-I concentrations with weaning weight and postweaning weights and gains ranged from -.01 to .12 and averaged .04. Estimates of hd2 indicate that it should be possible to change IGF-I concentration in beef cattle via selection. Negative genetic correlations imply that, if the goal is to make genetic improvement in weaning weights, postweaning weights and (or) postweaning gain in beef cattle, selection should be for decreased postweaning serum IGF-I concentration.

Animals↗

The unique endometrial expression and genomic organization of the porcine IGFBP-2 gene.

The insulin-like growth factor-binding proteins (IGFBPs-1-6) modulate the mitogenic and differentiative actions of the IGFs and may have IGF-independent functions. This study examined the gene expression and pregnancy-regulation of the IGF/IGFBP system in porcine uterine endometrium and myometrium during the periimplantation period and later stages of pregnancy. Endometrial IGFBP-2 mRNA abundance exhibited stage of pregnancy-dependent induction; whereas little or no IGFBP-2 mRNA was found in myometrium. IGFBP-2 protein was immunolocalized to the endometrial glandular and luminal epithelia (staining on day 60 > day 12) with minimal or no immunostaining of uterine stroma observed. IGFBP-3 and IGFBP-4 transcript levels became elevated in endometrium after implantation; whereas, IGFBP-5 and IGFBP-6 mRNAs were in greater abundance in periimplantation than post-implantation endometrium. IGFBP-1 transcripts, in contrast, could not be identified in porcine endometrium or myometrium of pregnancy. As a pre-requisite to understanding the pregnancy-induction and endometrial-specificity of the uterine-expressed IGFBP-2 gene, cosmids encompassing the pig IGFBP-2 chromosomal locus were isolated and characterized. This gene is comprised of four exons that span > 29 kb and encode a 316 amino acid precursor protein. All four exons were found to be G/C rich with exon 1 and immediate 5' flank exhibiting hallmarks of a CpG island. This latter region was devoid of TATA and CAAT motifs. Results identify the preferential endometrial expression of different IGFBP genes at either the periimplantation or post-implantation periods, perhaps reflecting distinct actions of these proteins at the embryo-maternal and feto-maternal interfaces, respectively. Interactions of steroid receptors, endometrial transcription factors and their corresponding cis elements may confer the unique uterine expression of the IGFBP-2 gene.

Amino Acid Sequence↗

Porcine endometrial glandular epithelial cells in vitro: transcriptional activities of the pregnancy-associated genes encoding antileukoproteinase and uteroferrin.

The aim of this investigation was to establish a homologous culture system for study of the transcriptional mechanisms underlying endometrial expression of the pregnancy-associated genes encoding antileukoproteinase (ALP), an elastase/cathepsin G protease inhibitor, and uteroferrin (Uf), a transplacental iron transport protein. Glandular epithelial (GE), Luminal epithelial (LE), and stromal (ST) cells were isolated from pig endometrium at Day 12 of pregnancy by differential enzymatic digestion and sieve filtration. The three cell populations differed with respect to their morphology in culture and with respect to their expression of ALP and Uf. Expression of the ALP gene was much higher in GE than in LE cells and was undetectable in ST cells. Similarly, GE had the highest expression of the Uf gene, and expression in ST was lower but distinct. Western blot analysis of conditioned media (72 h) from GE, LE, and ST, using antiporcine Uf antiserum, detected significant levels of secreted Uf only in GE. The steroid hormone responsiveness of GE cells was monitored by changes in steady-state levels of ALP mRNA after 24-h exposure to estradiol 17 beta (E2; 10 nM) and/or progesterone (P; 10 nM). Glandular epithelial cells treated with E2, P, and E2 + P had increased (p < 0.05) ALP mRNA levels relative to those in control cultures. Glandular epithelial cells were transiently transfected with reporter constructs containing the 5'-flanking genomic regions of each gene. For ALP, the 1266-nucleotide (nt) region of the ALP 5'-flanking genomic DNA, and progressive 5' deletions within this region, were coupled to a luciferase reporter gene (LUCE). The most proximal 119-bp fragment (-119ALP LUCE), which contains the TATAA box (-21 to -26 nt) and a GC-rich sequence (-66 to -74 nt), was sufficient to confer transcriptional activity to the reporter vector. Progressively longer 5'-genomic fragments had promoter activities higher than or similar to those of the 119-nt fragment. Estrogen had no effect on the transcriptional activities of any of the ALP constructs. Uteroferrin 5'-flanking and promoter DNA constructs containing the chloramphenicol acetyl transferase (CAT) reporter gene also exhibited transcriptional activity in GE cells. The presence of multiple interacting cis-regulatory sequences within this region was demonstrated by increased promoter activity, relative to that of the smallest construct (-182 UFCAT-E; basal activity), with the inclusion of sequences between -182 and -484 nf, and drastic reduction to basal activity with the inclusion of sequences between -484 and -831 nt. In summary, primary cultures of GE from early-pregnant porcine endometrium express ALP and Uf, are steroid hormone-responsive, and support the transcriptional activity of endometrial-associated gene promoter and regulatory sequences. The use of primary GE cells thus provides a convenient in vitro system for further study of the endocrine, paracrine, and autocrine factors regulating endometrial gene expression during pregnancy.

Acid Phosphatase↗

Molecular cloning of spermidine/spermine N1-acetyltransferase from the periimplantation porcine uterus by messenger ribonucleic acid differential display: temporal and conceptus-modulated gene expression.

Using messenger RNA (mRNA) differential display, we isolated several putative differentially expressed complementary DNAs (cDNAs) from the periimplantation (days 11-12) endometrium of unilaterally pregnant pigs. Nucleotide sequence analysis revealed that one cDNA clone was 87% homologous to human spermidine/ spermine N1-acetyltransferase (SSAT) over a stretch of 201 bp and represents the porcine homologue of this cDNA. A second differentially expressed cDNA encoded the porcine equivalent of the human fragile X mental retardation gene (FMR1), whereas a third specified an open reading frame with significant homology to the Escherichia coli N-acetylglucosamine transfer protein. Because SSAT is the rate-limiting enzyme in polyamine metabolism and polyamines are required cytosolic components for cell growth and differentiation, we characterized the expression of the porcine SSAT gene as a potential marker for endometrial growth and/or differentiation during early pregnancy. Further, using the consensus sequence from human and mouse cDNAs, PCR primers were designed and used to generate a 568-bp cDNA fragment from gravid endometrium that encompassed the entire open reading frame for porcine SSAT and which was subsequently used for Northern hybridization analysis. Two distinct SSAT transcripts, a major species of 1.3 kilobase pairs (kb) and a minor species of 3.5 kb were detected in endometrium, each with similar temporal patterns of expression. The levels of SSAT mRNA were higher (P = 0.03) in gravid than in nongravid uterine endometrium of unilaterally pregnant pigs on days 11-12. Similarly, SSAT mRNAs were more abundant (P = 0.0004) in day 12 pregnant than in day 12 cyclic, and in days 30, 60, 90, and 105 pregnant pig endometria. Uterine endometrial luminal epithelial (LE), glandular epithelial (GE), and stromal (ST) cells expressed the SSAT gene, but mRNA abundance varied among cell types (LE > GE > ST). Expression of SSAT gene in ovariectomized gilts treated with estrogen (E2, 100 microg/day), progesterone (P4, 200 mg/day) or E2 + P4 for 11 days was highest (P = 0.03) in the endometria of the P4 group. In contrast, E2 (10 nM), P4 (10 nM) and E2 + P4 had no effect on SSAT mRNA abundance in uterine endometrial explants from day 12 pregnant pigs. However, steady-state SSAT mRNA levels were induced in day 12 pregnant uterine explants by conditioned medium from day 12 filamentous but not spherical conceptuses. These data demonstrate that the temporal induction of the endometrial SSAT gene during periimplantation is modulated by a factor(s) secreted by the periimplantation conceptus and suggest that this enzyme may have an important role in uterine endometrial growth, remodeling and/or differentiation during periimplantation.

Acetyltransferases↗

Molecular cloning of cytochrome P450 aromatase complementary deoxyribonucleic acid from periimplantation porcine and equine blastocysts identifies multiple novel 5'-untranslated exons expressed in embryos, endometrium, and placenta.

To facilitate studies on the molecular mechanisms involved in the unique temporal expression of the P450 aromatase gene in porcine periimplantation embryos, a complementary DNA (cDNA) library was prepared from day 12 porcine embryo messenger RNAs (mRNAs) and screened with a cDNA fragment encoding the amino-terminus of human aromatase. Two size variants of nearly full-length cDNA clones (designated clones 33F and 34B; 2470 and 2588 bp, respectively) were isolated and sequenced. Clones 33F and 34B encoded identical aromatase proteins of 503 amino acids, but differed in size due to alternative polyadenylation signal usage for the corresponding mRNAs. Using the 5'-rapid amplification of cDNA ends procedure, two classes of cDNA clones that contained distinct putative exon 1 sequences (E1A and E1B, respectively), but were otherwise identical in exon 2 and 3 sequences, were isolated. The E1A DNA sequence was identical to the 5'-end specified by clones 33F and 34B, except for an additional 23 nucleotides. The E1A and E1B exons showed no significant homology with each other or with the aromatase cDNA sequences from other species, including human. Expression of E1A-containing aromatase mRNA was higher than that of E1B in day 12 blastocysts, although both mRNAs were expressed at low levels in porcine endometrium and placenta of early pregnancy and in ovary at periestrus. To determine whether the E1A or E1B sequence was common to aromatase mRNAs in other steroidogenic preimplantation embryos, aromatase cDNA clones spanning exons 1-3 were isolated from equine embryos by a combination of RT-PCR and 5'-rapid amplification of cDNA ends. Equine embryonic exon 1 cDNA sequence had no homology with corresponding regions in aromatase transcripts of pigs or other species; in contrast, exon 2 and 3 cDNA sequences predicted an amino acid sequence with significant homology to aromatase. Results from the present study demonstrate alternative splicing of a novel first exon(s) in P450 aromatase gene transcripts in porcine preimplantation embryos and in endometrium and placenta of pregnancy. The lack of homology among equine, porcine, human, and bovine aromatase 5'-untranslated exons may indicate divergence in the corresponding regulatory motifs of these regions among mammalian species. These observations suggest the potential significance of activation of the E1A promoter and/or splicing of novel aromatase 5'-exons in the transient production of estrogens by periimplantation blastocysts.

Alternative Splicing↗

Multiple upstream promoter elements of the gene for the pregnancy-associated tartrate-resistant acid phosphatase, uteroferrin bind human endometrial nuclear proteins.

The endometrial expression of the gene encoding porcine uteroferrin (UF), during pregnancy is presumed to be mediated by cis-regulatory regions distinct from those that confer its limited expression to other mammalian tissues and cell types. In the present study, chimeric DNA constructs of native and progressive 5' deleted promoter regions fused to the promoter chloramphenicol acetyl-transferase reporter gene were transiently transfected in the human endometrial carcinoma cell line ECC-1 to examine their ability to direct UF promoter activity. The region between -1935 and -831 bp contained negatively acting elements which drastically reduced basal promoter activity. In contrast, the region between -831 and -484 bp contributed significantly to high level basal activity. Gel retardation and footprinting assays identified factor-binding sites between -1601 and -484 bp for human endometrial nuclear proteins. One binding site corresponds to a heptamer motif (TGCTAGA) present twice within the -1601 to -831 bp region and previously shown to bind an 80 kDa porcine endometrial protein. This heptamer bound an 80 kDa nuclear protein from human ECC-1 and human Ishikawa endometrial cells and a 92 kDa protein from human placental JEG-3 cells. The other binding region within -831 to -484 bp contained GC-rich sequences, which bind human Sp1. The protected GC-rich sequence (GC-Box 1) between -768 and -749 bp also binds a 24 kDa M(r) protein. Nuclear proteins of molecular weight 40-60 kDa and distinct from Sp1, Sp2 and Sp3 bound a second GC-rich sequence (GC-Box 3) between -628 and -616 bp. These studies demonstrate that multiple elements within the UF gene promoter bind nuclear proteins which are similarly expressed in other endometrial cells and suggest that common transactivating factors may functionally mediate expression of endometrial-associated genes.

Acid Phosphatase↗

Cloning and expression of a rat placental cDNA encoding a novel cathepsin L-related protein.

Cathepsin L is a major lysosomal cysteine protease produced by mouse placenta and fibroblasts. This study characterizes a novel cathepsin L-related mRNA expressed in rat placenta. Immunological and nucleotide screening of a rat placenta library identified six positive clones, the largest, pCLRP-9, being 924 base pairs in length. The combined sequences of all the clones contain an open reading frame of 711 nucleotides, a termination codon, a polyadenylation site, and 197 nucleotides of 3' untranslated region, but lack the 5' translation initiation codon. The pCLRP nucleotide sequence showed 60-64% identity to those of mouse, rat, and human cathepsin L. The deduced amino acid sequence of pCLRP codes for 237 amino acids, which align with the carboxy-terminal sequence of cathepsin L and has the active site residues characteristic of the cysteine protease family. Northern blot analysis showed hybridization of pCLRP with a major mRNA transcript of 1.3 kilobases expressed in placenta, but not kidney or liver. In contrast, a cDNA for mouse pro-cathepsin L hybridized with a transcript of 1.7 kilobases expressed in rat kidney, as well as placenta. During late gestation, steady-state levels of rat placental pCLRP mRNA were highest on day 18, whereas those of mouse procathepsin L were greatest on day 20 of gestation. Antiserum to mouse cathepsin L cross-reacted with four proteins of molecular weights 36,000 to 42,000 in rat placental culture medium, of which two were absent in the kidney. These data indicate that rat placenta expresses several species of cathepsin L-type proteins, which may be involved in placental function and nutrient supply.

Amino Acid Sequence↗

Cloning of a novel rat placental prolactin-like protein C-related cDNA.

Prolactin-like protein C (PLP-C) is a major rat placental protein which is expressed during the second half of pregnancy and belongs to the growth hormone-prolactin family. Here we report on the isolation of overlapping rat placental cDNAs which specify a transcript of 915 base pairs and predict a 205-amino acid translated product. The full-length cDNA shares 93% homology with the nucleotide sequence reported for PLP-C, and the putative protein, which we designate PCRP (prolactin-like protein C-related protein), exhibits 88% homology with the PLP-C precursor protein. PCRP lacks the signal sequence and the first 2 N-terminal cysteine residues present in PLP-C. Northern blot analysis indicated the basal zone-specific expression of PCRP mRNA, with no detectable expression in decidua and labyrinth. Southern blot analysis of rat genomic DNA using PCRP cDNA as a probe demonstrated multiple hybridization bands, suggestive of a family of genes encoding prolactin-like proteins. Western immunoblot analysis of basal zone culture media using a PCRP antipeptide antiserum revealed at least 5 immunoreactive proteins. The existence of a PLP-C family of proteins in rat placenta after midpregnancy suggests their functional significance in the maintenance of pregnancy and fetal development.

Amino Acid Sequence↗

Porcine calbindin-D9k gene: expression in endometrium, myometrium, and placenta in the absence of a functional estrogen response element in intron A.

The expression of Calbindin-D9k (CaBP-9k) in the pig uterus and placenta was measured by Northern blot analysis and reverse transcription polymerase chain reaction (PCR), respectively. Progesterone (P4) administration to ovariectomized pigs decreased CaBP-9k mRNA levels. Expression of endometrial CaBP-9k mRNA was high on pregnancy Days 10-12 and below the detection limit on Days 15 and 18. On Day 60, expression could be detected at low levels. In myometrium and placenta, CaBP-9k mRNA expression was not detectable by Northern analysis using total RNA. Reverse-transcribed RNA from both tissues demonstrated the presence of CaBP-9k transcripts by means of PCR. The partial CaBP-9k gene was amplified by PCR and cloned to determine the sequence of intron A. In contrast to the rat CaBP-9k gene, the pig gene does not contain a functional estrogen response element (ERE) within this region. A similar ERE-like sequence located at the identical location was examined by gel retardation analysis and failed to bind the estradiol receptor. A similar disruption of this ERE-like sequence has been described in the human CaBP-9k gene, which is not expressed at any level in placenta, myometrium, or endometrium. It is concluded that the pig CaBP-9k gene is regulated in these reproductive tissues in a manner distinct from that in rat and human tissues. The regulation is probably due to a regulatory region outside of intron A, which in the rat gene contains the key cis element for uterine expression of the CaBP-9k gene.

Animals↗

Developmental regulation of steroidogenic enzyme gene expression in the periimplantation porcine conceptus: a paracrine role for insulin-like growth factor-I.

During periimplantation, the estrogen biosynthetic capability of the porcine conceptus is transient, coincident with morphological development (trophoblast elongation), and temporally associated with maximal uterine release of insulin-like growth factor-I (IGF-I) into the luminal fluid. We investigated the possible linkages of conceptus steroidogenesis and IGF-I by characterizing the developmental expression of the pig conceptus cytochrome P450 aromatase (P450arom) and cytochrome P450 17 alpha-hydroxylase (P45017 alpha) genes during periimplantation (days 8, 10, 12, 15, and 18) and the potential regulation by IGF-I of conceptus P450arom messenger RNA (mRNA) content. Primer pairs derived from porcine P450arom and P45017 alpha DNA sequences were used in reverse transcription-polymerase chain reaction analysis of conceptuses of differing morphologies and developmental stages. RNA transcripts for P450arom and P45017 alpha were readily detected only in conceptuses obtained at day 12 of pregnancy, with RNA levels varying according to morphological stage. P45017 alpha gene expression was maximal in spherical conceptuses greater than 5 mm in diameter, whereas P450arom mRNA was expressed in small (3-5 mm) and large (6-10 mm) spherical (large >> small), as well as day 12, filamentous conceptuses. Using primers derived from the human IGF-I receptor (IGF-IR) DNA sequence, constitutive expression of IGF-IR mRNA in porcine conceptuses throughout early pregnancy was demonstrated. Constitutively low expression of conceptus RNA transcripts for IGF-I ligand was similarly observed. However, uterine luminal fluid concentrations of IGF-I on day 12 were highly correlated with conceptus morphology, with maximal IGF-I in uteri possessing filamentous conceptuses. In vitro addition of IGF-I to day 12 conceptuses of filamentous or spherical morphologies resulted in distinct effects on P450arom mRNA abundance. Filamentous conceptuses had increased amounts of P450arom mRNA when treated with IGF-I. In contrast, IGF-I decreased the levels of P450arom mRNA in spherical conceptuses. IGF-I treatment did not alter mRNA expression of the IGF-IR gene in conceptuses of either morphology. These results demonstrate that transient expression of P450arom and P45017 alpha genes in perimplantation porcine conceptuses, document the constitutive expression of the conceptus IGF-IR gene, and support the involvement of endometrial IGF-I in modulation of embryonic P450arom mRNA abundance.

Amino Acid Sequence↗

Divergent selection for blood serum insulin-like growth factor I concentration in beef cattle: I. Nongenetic effects.

Data were obtained from an ongoing experiment involving divergent selection for blood serum IGF-I concentration in purebred Angus cattle. The experiment includes approximately 100 spring-calving (50 high and 50 low line) and 100 fall-calving (50 high and 50 low line) cows. The selection criterion is the mean of IGF-I concentrations measured on each animal at d 28, 42, and 56 of the postweaning performance test. Mean IGF-I values were available for a total of 526 bull and heifer calves. Pooled across years and breeding seasons, high line progeny averaged 21 +/- 6, 17 +/- 6, and 23 +/- 5 ng/mL more IGF-I (P < .01) than low line progeny at d 28, 42, and 56 of the postweaning test. Season effects on IGF-I approached statistical significance only at d 42 and 56 of the postweaning period. Pooled across years and selection lines, spring minus fall differences were 9 +/- 10 (P = .52), -17 +/- 10 (P = .10), -22 +/- 9 (P = .07), and -9 +/- 6 (P = .45) ng/mL for IGF-I concentrations at d 28, 42, and 56 of the postweaning test and for mean IGF-I, respectively. Sex effects on serum IGF-I concentration were highly significant, with greater IGF-I expression in bulls, but were confounded with diet and location. Age of dam effects were not significant. Regressions of IGF-I concentration on on-test age of calf ranged from .46 +/- .13 to 1.08 +/- .20 ng.mL-1.d-1 and were highly significant for all measures of IGF-I.(ABSTRACT TRUNCATED AT 250 WORDS)

Aging↗

Transient expression of the cytochrome P450 aromatase gene in elongating porcine blastocysts is correlated with uterine insulin-like growth factor levels during peri-implantation development.

The insulin-like growth factors (IGFs-I and -II) are mediators of cellular growth and differentiation. The expression of these growth factor genes is temporally and hormonally regulated in the uterus during pregnancy, suggesting potentially important roles in embryonic development, implantation, and successful progression of pregnancy. A known regulator of uterine IGF-I secretion is estrogen, which is produced by pre-implantation mammalian embryos of several species and whose amounts may be influenced by growth factors via their effects on the transcriptional activities of steroidogenic enzyme genes. We have previously proposed that within the uterine microenvironment, a positive feedback loop may link uterine secretion of IGFs with embryonic production of estrogens to maintain and coordinate the timing of biological signals essential for embryo development. The present study examined the temporal relationships between the levels of conceptus cytochrome P450 aromatase mRNA and protein and concentrations of IGF-I and -II in uterine luminal fluids of pigs. A DNA fragment encoding a highly conserved region among mammalian aromatase P450 proteins was isolated by hybridization screening of a porcine genomic DNA library with a human aromatase P450 cDNA fragment as probe. A synthetic oligopeptide DDVIDGYPVKKGTNI within this highly conserved region was used to generate an antiserum in sheep that recognized a protein of M(r) 49,000 in Western blot analysis of porcine ovarian, placental, endometrial, and conceptus extracts. A radioimmunoassay (RIA) for aromatase P450 was established and validated using this antiserum. RIA demonstrated highest levels of aromatase P450 protein in extracts of days 10, 11, and 12 porcine conceptuses with significantly diminished levels in elongated conceptuses at days 15 and 18. In the conceptus, aromatase P450 was localized to the inner cell layer (hypoblast) of the trophectoderm. A major mRNA transcript of approximately 3 kb in length was demonstrated by Northern blot analysis of conceptus RNA with a porcine aromatase P450 antisense RNA probe. The relative levels of aromatase P450 mRNA were higher in conceptuses at day 12 than at days 15 and 18, in parallel with the levels of aromatase P450 protein. RIA of uterine luminal fluids demonstrated maximal concentrations of IGF-I at day 12, which were significantly decreased by day 15, and increased concentrations of IGF-II by day 12, which were maintained until day 18 of pregnancy. These results demonstrate that the transient expression of conceptus aromatase P450 mRNA and protein in elongating pig blastocysts is coincident with their capacity to secrete estrogens and with the rapidly changing concentrations of IGFs within the uterine microenvironment.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

Pregnancy-associated endometrial expression of antileukoproteinase gene is correlated with epitheliochorial placentation.

Uterine expression of the mRNA encoding antileukoproteinase (ALP) is highest in pig uterus during mid- to late pregnancy, suggesting a stage of pregnancy-dependent role for this elastase/cathepsin G protease inhibitor in feto-maternal interactions. To examine a potential relationship between uterine synthesis of ALP and the type of placentation in mammalian species, the expression of ALP mRNA and/or protein in pregnant mares, cows, rats, and mice was evaluated. Genomic DNA and mRNA hybridization analyses were performed using a porcine ALP cDNA as probe. The concentration of ALP protein in reproductive tissues was determined by RIA using a polyclonal antibody raised against a synthetic peptide (ALP 16P) corresponding to amino acid residues 21-36 of the porcine ALP protein. A single ALP mRNA transcript of approximately 0.8 kb in length was detected in equine and bovine uterine tissues. The relative abundance of ALP mRNA in equine endometrium increased between days 125-170 (mid-pregnancy), and then decreased by day 215 of pregnancy. Similarly, the steady state levels of ALP mRNA in bovine endometrium and myometrium were higher during mid- to late than during early pregnancy. The levels of ALP mRNA in bovine fetal cotyledon were low and did not change significantly with stage of pregnancy. No hybridization was detected to pregnant rat endometrial tissues, although high stringency Southern blot analysis of porcine, bovine, and rat genomic DNAs using porcine ALP cDNA as probe predicted a high degree of nucleotide sequence homology in their respective ALP genes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗