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K Imakawa

Publications and source records attributed to K Imakawa.

At least 19 recordsLinked to original sources

The casein mRNA decay changes in parallel with the poly(A) tail length in the mouse mammary gland.

Using beta- and gamma-casein mRNAs, the relationship between poly(A) tail length and half-life of mRNA is determined in the mouse mammary gland during pregnancy and lactation. beta- and gamma-Casein mRNAs increase before and after parturition, respectively. The poly(A) tail as well as the half-life of casein mRNA becomes longer upon the active casein mRNA synthesis. The poly(A) tail is shortened gradually as lactation progresses. The half-life of mRNA decreases approximately from 20 h at early to 4 h at late lactation. Northern blot analysis reveals that nuclear RNA has the same poly(A) tail length as casein mRNA in the cytoplasm does. Thus, the mammary gland changes the poly(A) tail length of casein mRNA. The poly(A) tail length changes in parallel with the level of poly(A) polymerase (PAP) mRNA during pregnancy and lactation, suggesting that the mammary gland determines the poly(A) tail length of casein mRNA through the change in the PAP gene expression. As the half-life of casein mRNA is related with the degree of polyadenylation, we conclude that the poly(A) tail elongation and shortening is a mechanism in regulating the mRNA decay.

Amanitins↗

Regulation of endometrial granulocyte macrophage-colony stimulating factor (GM-CSF) in the ewe.

Granulocyte macrophage-colony stimulating factor (GM-CSF) increases ovine interferon-tau (oIFNtau) secretion by ovine conceptuses, but endometrial production of GM-CSF has not been characterized. Endometrial GM-CSF expression was evaluated in ovariectomized ewes implanted with estradiol-17beta (E(2)) and/or progesterone (P(4)) for 14 days, in day 14 cyclic and day 14 pregnant ewes. Relative levels of endometrial GM-CSF mRNA were 3-fold higher in E(2)- and E(2)/P(4)-treated ewes than that of control or P(4)-treated ovariectomized ewes. Levels of endometrial GM-CSF mRNA for cyclic ewes were similar to E(2)- and E(2)/P(4)-treated ewes, but amounts of GM-CSF mRNA in pregnant ewes were 2-fold higher. GM-CSF concentrations in endometrial culture media, determined by GM-CSF bioassay, for cyclic and E(2)/P(4)-treated ovariectomized ewes were 3-fold higher than those of control, E(2)- and P(4)-treated ovariectomized ewes; however, amounts of GM-CSF in pregnant ewes were 2-fold higher. Immunoreactive GM-CSF, examined by western blot, was detected in the culture medium from E(2)/P(4)-treated ovariectomized, cyclic and pregnant ewes. Luminal and glandular epithelia and stromal regions were determined to be sites of GM-CSF expression by immunohistochemistry and in situ hybridization techniques. Data indicate that combined E(2) and P(4) treatment of ovariectomized ewes is sufficient to restore GM-CSF expression to the level found in cyclic ewes; however, GM-CSF mRNA and protein in pregnant ewes is 2-fold greater than in ovariectomized or cyclic ewes. These data suggest that the conceptus, in addition to steroids, may play a role in the regulation of endometrial production of GM-CSF.

Animals↗

Reactivation of feline foamy virus from a chronically infected feline renal cell line by trichostatin A.

Although acute infection of feline foamy virus (FeFV) is normally highly cytopathogenic in Crandell feline kidney (CRFK) cells, a noncytopathic persistent infection was established in the cells after cocultivation of the initially infected cells with uninfected cells four times. To investigate reactivation of persistent infection, CRFK cells chronically infected with FeFV were treated with trichostatin A (TA), a histone deacetylase inhibitor. TA induced higher FeFV production from the Coleman strain carrier culture and also induced marked syncytium formation. In contrast, human foamy virus, which contains less homologous long terminal repeat (LTR) and putative internal promoter (IP) sequences, persistently infecting baby hamster kidney cells was not reactivated by TA. The Sammy-1 strain of FeFV, from which a part of the U3 region in the LTR is naturally deleted, showed less reactivation. The Coleman LTR promoter-based beta-Gal-expressing plasmid was activated in the persistently Coleman-infected cells in the presence of TA, whereas the Sammy-1 LTR was not activated. Furthermore, the amounts of Gag protein expressed did not change in the presence or absence of TA. Because the putative IP region was very similar between the two strains, the initiation by TA is relatively specific for LTR sequences, and, therefore, histone deacetylation is at least in part responsible for reactivation of FeFV from carrier cell culture.

Animals↗

Enhancer regions of ovine interferon-tau gene that confer PMA response or cell type specific transcription.

Interferon-tau (IFNtau), produced by the trophectoderm of peri-implantation conceptuses in ruminant ungulates, attenuates the uterine production of a luteolytic factor, prostaglandin F(2alpha), resulting in the maintenance of corpus luteum function. However, molecular mechanisms regulating the temporal/spatial expression of IFNtau gene are not clearly understood. The 5'-upstream region of the sheep IFNtau (oIFNtau) gene was examined for its transcriptional regulation in two different cell types; JEG3 cells supported the transactivation of oIFNtau-reporter construct, but HeLa cells did not. In a heterologous SV40 enhancer-oIFNtau promoter or oIFNtau enhancer-SV40 promoter systems, elements required for such cell specific transactivation were localized between -654 and -555 bases, the enhancer, but not the basal promoter region of the oIFNtau gene. In these combinations, high degrees of transactivation were observed in JEG3 cells and the activity was further enhanced by the addition of phorbol 12-myristate 13-acetate (PMA), while those responses were absent in HeLa cells. To identify nucleotide sequences responsible for cell specific expression, transient transfection studies with sequential point mutations in the enhancer elements were executed. Transactivation of oIFNtau enhancer-reporter constructs was primarily regulated by three regions containing AP-1 site, GATA like sequence and site(s) unidentified. In gel mobility shift assays (GMSAs), the AP-1 site located in the enhancer region was recognized by nuclear extracts from both cell types. However, one of the GMSA probes containing GATA-like sequence exhibited different DNA-protein complex patterns in JEG3 and HeLa cells. Observations, in which the same upstream sequence behaved differently due possibly to kinds of nuclear factors available in these cell lines, suggest that such a sequence may be involved in cell specific transactivation of the oIFNtau gene. Furthermore, the same enhancer sequences were also recognized by nuclear extracts from sheep trophoblasts, suggesting that the enhancer sequences between -654 and -555 bases of oIFNtau gene may be functioning in vivo.

Animals↗

Gastric proteinase digestion of caseins in newborn pups of the mouse.

Casein micelles of mouse milk consist of alpha-, beta-, gamma-, and kappa-caseins. By digestion with alkaline phosphatase, they were separated as an independent band by sodium dodecyl sulfate (SDS)-polyacrylamide gel electrophoresis (PAGE). The compositions of alpha-, beta-, gamma-, and kappa-caseins were 24.3, 25.1, 9.4, and 41.2% in colostrum, and 36.8, 15.6, 11.9, and 35.7% in mature milk, respectively. Zero-day-old pups were allowed to access either colostrum or mature milk, and the aggregated milk in the stomach was analyzed by SDS-PAGE. Caseins in colostrum were digested more rapidly and efficiently than those in mature milk. Among the seven peptides present in the aggregated caseins, four peptides were colostrum-specific and derived from alpha- and gamma-caseins. It was expected that colostrum-specific and soluble peptides were generated from alpha- and gamma-caseins through gastric proteinase digestion. Amino acid sequence analysis and the pH of the aggregated milk suggested that caseins in the stomach were digested by a chymotrypsin-like proteinase. Caseins in colostrum were different from those in mature milk, with respects to the casein composition as well as the gastric proteinase sensitivity. It is concluded that the lactating mice on the day of parturition supply particular caseins to their young.

Animals↗

Determination of genes involved in the process of implantation: application of GeneChip to scan 6500 genes.

Using the high-density arrays of oligonucleotides (GeneChip) technology, the expression of uterine genes was examined before and after conceptus implantation in mice. Of the 6500 genes analyzed, levels of 399 gene expressions changed; 192 genes increased levels of expression while the remaining 207 genes declined. The findings suggest that both gene activation and deactivation (suppression) are required for successful implantation.

Animals↗

The poly(A) tail length of casein mRNA in the lactating mammary gland changes depending upon the accumulation and removal of milk.

The length of casein mRNA from the lactating mouse mammary gland, as assessed on Northern blots, is shorter after weaning, but is elongated following the removal of milk. In order to investigate this phenomenon, the molecular structures of beta- and gamma-casein mRNAs were analysed. The coding and non-coding regions of the two forms were the same length, but the long form of casein mRNA had a longer poly(A) tail than the short form (P<0.05). In order to examine the stability of casein mRNA under identical conditions, casein mRNAs with the long and short poly(A) tails were incubated in the rabbit reticulocyte lysate (RRL) cell-free translation system. Casein mRNA with the long poly(A) tail had a longer half-life than that with the short tail (P<0.05). The beta- and gamma-casein mRNAs were first degraded into 0.92 and 0.81 kb fragments respectively. With undegraded mRNA, the poly(A) tail shortening by exoribonuclease was not observed until the end of the incubation. Northern blot analysis showed that casein mRNA with the long poly(A) tail was protected efficiently from endoribonucleases. We conclude that the length of the poly(A) tail of casein mRNA in the lactating mammary gland changes depending upon the accumulation and removal of the gland's milk, and we show that the longer poly(A) tail potentially protects the mRNA from degradation by endoribonucleases.

Animals↗

Genetic mapping of a locus associated with bovine chronic interstitial nephritis to chromosome 1.

Chronic interstitial nephritis with diffuse zonal fibrosis (CINF) occurs in Japanese Black cattle (Wagyu) as an autosomal recessive disorder leading to death prior to puberty, first six months or a year of life. We performed a genome-wide scan using microsatellite markers in a Wagyu pedigree segregating for CINF and mapped the CINF locus to bovine chromosome 1. CINF was closest to microsatellites BM9019 and INRA49 (Z score = 12.0; P < 3.4 x 10(-10)).

Animals↗

Changes in the temporal and spatial expression of H beta 58 during formation and maturation of the chorioallantoic placenta in the Rat.

Cloning and sequencing of a cDNA amplified by RNA fingerprinting at the implantation site of pregnant rats revealed 80% similarity with H beta 58, previously shown to be essential for formation of the chorioallantoic placenta in the mouse. H beta 58 mRNA was detected in the endometrium of hormonally sensitized rats stimulated to undergo decidualization and in the contralateral uterine horns lacking a decidual stimulus, indicating that uterine expression of H beta 58 mRNA did not require decidualization or the presence of a blastocyst. Immunodetection in the early postimplantation uterus (Days 6-8 of pregnancy) showed H beta 58 localized in the luminal and glandular epithelia and some stromal cells. Decidual cells at Day 6 of pregnancy expressed H beta 58, and by Day 9 of pregnancy, the protein localized throughout the maternal decidua. The temporal and spatial distribution of H beta 58 in the developing chorioallantoic placenta was assessed at Days 10, 12, and 14 of pregnancy. Immunoreactive H beta 58 localized to erythroid cells within the developing fetal vasculature of the chorioallantoic primordia at Day 10 of pregnancy. By Day 12, the fetal vasculature extended into the placental labyrinth, and the erythroid stem cells continued to strongly express H beta 58. At Day 14 of pregnancy, immunoreactivity became evident in the trophoblast giant cells and syncytiotrophoblast of the fetal placenta. As the chorioallantoic placenta matured (Day 18), H beta 58 mRNA was 3.6-fold higher in the labyrinth compared with the junctional region. Stable cell lines (HRP/LRP) isolated from the rat labyrinthine placenta expressed H beta 58 mRNA and protein. The expression pattern of H beta maternal and fetal placental tissues and its early expression in fetal erythroid stem cells during formation and maturation of the chorioallantoic placenta suggest that H beta 58 plays key roles in the regulatory networks that control hematopoietic development and placentation.

Allantoin↗

Analysis of possible silencer elements of ovine interferon-tau gene.

During the peri-implantation period significant production of ovine interferon-tau (olFNtau) by the trophectoderm is detected in day 13-16 conceptuses, but its level rapidly declines thereafter. To understand molecular mechanisms by which oIFNtau gene expression is down-regulated, a variety of deletion constructs were prepared from upstream sequences of the oIFNtau gene and examined for possible silencer regions by using transient transfection into human choriocarcinoma, JEG3, cells. Two regions between -700 to -654 bases (distal region) and from -503 to -453 bases (proximal region) were found to be the possible negative regulatory regions. With probes prepared from these regions, gel mobility shift assay (GMSA) was then conducted. DNA-protein complexes were observed, but the gel shift pattern was different between nuclear extracts from days 14 (active oIFNtau production) and 20 (minute oIFNtau production) ovine trophoblasts. Day 20 nuclear extracts exhibited more band patterns than those of day 14; most notably the distal region between -692 and -668 bases exhibited the distinct band with nuclear extracts from day 20, but not from day 14 trophoblasts. In addition, the band patterns from day 20 trophoblast nuclear proteins were similar to those detected with JEG3 and HeLa cell nuclear extracts. Taken together, these observations suggest that the upstream sequences identified could serve as negative regulatory regions to which various nuclear factors bind, resulting in reduction of oIFNtau gene transcription.

Animals↗

Identification of a functional transcriptional factor AP-1 site in the sheep interferon tau gene that mediates a response to PMA in JEG3 cells.

To examine regulatory mechanisms of sheep interferon tau (oIFNtau) gene expression, potential enhancer/silencer elements of the oIFNtau gene were examined using a transient transfection system with oIFNtau gene-chloramphenicol acetyltransferase (oIFNtau-CAT) reporter constructs in human choriocarcinoma cells, JEG3. Experiments with 5'-deletion constructs revealed that the upstream regions from bases -654 to -607 and from bases -606 to -555 were essential for oIFNtau gene expression. In a heterologous transcriptional system in which the upstream regions of oIFNtau were inserted in front of simian virus 40 (SV40) promoter, the regions between bases -654 and -555 were determined as being the enhancer region required for oIFNtau-SV40-CAT transactivation. A subsequent study with the oIFNtau-CAT constructs lacking the upstream region between bases -542 and -124 revealed that, in addition to the further upstream region between bases -1000 and -654, the sequences from bases -543 to -452 seemed to act as silencer regions. The oIFNtau-CAT constructs with site-specific mutagenesis revealed that multiple enhancer elements existed between bases -654 and -555 of the oIFNtau gene. On the basis of nucleotide sequence analysis, there are numerous sites between bases -654 and -555 to which potential transcriptional factors, AP-1, GATA and GATA-related proteins, could bind. Furthermore, gel mobility-shift assays revealed that AP-1 or other nuclear factors could bind to these elements. In co-transfection studies, the expression of c-Jun plus c-Fos enhanced the transactivation of oIFNtau-CAT but the expression of GATA-1, GATA-2 or GATA-3 did not. Taken together, these results suggest that the upstream region between bases -654 and -555 could be considered as the enhancer region for oIFNtau gene transactivation.

Animals↗

Effects of PMA and transcription factors on ovine interferon-tau transactivation in various cell lines.

Interferon-tau (IFNtau) is produced by the trophectoderm of ruminant ungulates and its gene transactivation in vitro has so far been achieved only in human choriocarcinoma cells, JAR and JEG3. To examine if ovine IFNtau gene transactivation could be induced in cells other than JAR or JEG3 cells and its activation could be aided by the expression of a protooncogene(s), a transient transfection system was developed with the upstream region of ovine IFNtau gene that had been inserted into the chloramphenicol acetyltransferase (CAT) reporter plasmid (IFNtau-CAT). The effect of a protein kinase C (PKC) activator, phorbol 12-myristate 13-acetate (PMA), on IFNtau-CAT transcriptional activity was examined in JEG3, human embryonic kidney (293), HeLa and Vero cells. Upon transfection and PMA treatment, ovine IFNtau gene was transactivated in two unrelated cell lines, JEG3 and 293 cells. Since IFNtau-CAT was not induced in HeLa or Vero cells, HeLa and JEG3 cells were further examined for their ability to support IFNtau-CAT transactivation in a co-transfection system. While the expression of c-myc, interferon regulatory factor 1 or 2 (IRF-1 or IRF-2) was not effective, CAT activity was strongly enhanced in both JEG3 and HeLa cells with the co-transfection of c-Jun or c-Jun plus c-Fos. These data suggest that ovine IFNtau gene transcription induced by PMA is not specific for trophoblast cells and a protooncogene, c-jun, is a downstream effector of PMA activated nuclear factors in its signal transduction cascade resulting in IFNtau gene transactivaion.

Animals↗

Matrix metalloproteinases and tissue inhibitors of metalloproteinases in giant cell arteritis: an immunocytochemical study.

Giant cell arteritis (GCA) is a relatively common granulomatous arteritis of unknown etiology which mainly occurs in elderly people. Using histopathological findings from-seven biopsy cases of temporal artery and one autopsy case of GCA, and performing immunocytochemical staining for matrix metalloproteinase (MMP)-2 and -9 and tissue inhibitor of matrix metalloproteinase (TIMP)-1 and -2, we tested the hypothesis that an imbalance between MMPs and TIMPs may be a critical determinant in developing severe intimal hyperplasia and luminal stenosis. All biopsy cases revealed nearly complete luminal occlusion of the temporal artery with active lymphocytic infiltrate, fragmentation of internal lamina and median elastic fibers. Four of seven cases revealed typical GCA. The autopsy case was systematically sampled for histological examination, revealing GCA in the ascending aorta, main branches of aorta and coronary artery. Immunocytochemical staining revealed intense staining for MMP-2 and -9 in fragmented media of the aorta and artery, and less positive staining for TIMP-1 and -2 at the MMP-positive media. In situ hybridization revealed intense positive staining for TIMPs in GCA despite weak immunocytochemical staining for TIMPs. Control cases were negative for TIMPs by immunocytochemical staining whereas RNA message level was mildly positive at a lesser intensity than that of GCA. Granulomatous tissue of fibroblasts and giant cells were most intensely positive for MMPs. The presence of markedly increased MMPs and less increased TIMPs in GCA may implicate an MMPs-TIMPs imbalance in the pathogenesis of GCA.

Aged↗

Co-expression of transforming growth factor beta and interferon tau during peri-implantation period in the ewe.

The transforming growth factor beta (TGFbeta) family is known to control cell migration, growth, differentiation, function and regulation of extracellular matrix, all of which are required for the process of implantation. Expression of TGFbeta by the conceptus and endometrium was studied during the period of implantation in the ewe. A total of thirty-four ewes were hysterectomized on day 12, 14, 16, 18 or 20 of pregnancy (day 0 = day of estrus). Conceptus (200 mg wet weight) and endometrial (300 mg wet weight) tissues were cultured in vitro in 7 and 10 ml Eagle's minimal essential medium, respectively. The culture media were subjected to a bioassay to determine concentrations of TGFbeta. Conceptus culture media (CCM) were also analyzed for contents of ovine interferon-tau (oIFNr), low molecular weight acidic protein, produced by the trophectoderm between days 8 and 21 of pregnancy. Whole uteri including conceptus(es) and conceptuses (day 16) only were fixed and subjected to immunohistochemical and in situ hybridization studies. Levels of oIFNr produced by conceptuses were the highest on day 16 at 4.4 microg/ml. Concentrations of TGFbeta in day 12, 14, 16, 18 and 20 CCM were 38+/-19, 102+/-56, 862+/-152, 728+/-191 and 336+/-106 pg/ml, respectively, and approximately 90% of TGFbeta activity in CCM was due to TGFbeta1 whereas less than 10% was due to TGFbeta3 based on neutralization with TGFbeta subtype-specific antibodies. Immunohistochemical studies revealed that day 16 conceptuses displayed major staining for TGFbeta1, no beta2 staining and minor staining for beta3. In situ hybridization studies also revealed that day 16 trophectoderm possessed most TGFbeta1 mRNA while day 14 trophectoderm and day 20 chorion/amnion displayed weaker staining for TGFbeta1 mRNA. TGFbeta in day 12, 14, 16, 18 and day 20 endometrial culture media was 156+/-37, 129+/-33, 49+/-22, 62+/-23 and 179+/-40 pg/ml, respectively, and approximately 65% and 35% of the activities were due to TGFbeta1 and beta2, respectively. These results indicate that TGFbeta production by the conceptus coincides with the time when oIFNtau production starts to decline. These observations support the postulate that TGFbeta may play an important role in implantation in the ovine species.

Animals↗

Enhancement of ovine trophoblast interferon by granulocyte macrophage-colony stimulating factor: possible involvement of protein kinase C.

Interferon-tau (oIFNtau), the major secretory product of ovine conceptuses between days 13 and 21 (day 0=day of estrus) of pregnancy, is implicated in the process of maternal recognition of pregnancy. Culturing of day-14 and day-16 conceptus tissues in the presence of human granulocyte macrophage-colony stimulating factor (hGM-CSF) or interleukin-3 (IL-3) produces a marked increase in oIFNtau mRNA and protein expression. Since GM-CSF and IL-3 are localized at the luminal and glandular epithelia of the ovine endometrium, maternally derived GM-CSF and IL-3 may affect conceptus production of oIFNtau in a paracrine manner. However, the molecular mechanisms by which endometrial GM-CSF and IL-3 up-regulate oIFNtau production have not been defined. As an initial investigation of the signaling pathway regulating the GM-CSF induction of the oIFNtau gene, day-16 conceptuses were treated with an inducer, phorbol 12-myristate 13-acetate (PMA) and an inhibitor, calphostin C of the protein kinase C (PKC) pathway. Treatment with either 150 units/ml hGM-CSF (P<0.01) or 10 nM PMA (P<0.05) resulted in a significant increase in oIFNtau mRNA expression. Pretreatment of conceptuses with 1 microM PMA for 12 h to produce PKC-deficient tissues or treatment with 50 mM calphostin C abolished the hGM-CSF-induced increase in oIFNtau mRNA. An in vitro expression system was established for the analysis of oIFNtau gene regulatory sequences. The oIFNtau010 gene has been isolated previously and found to be the principal oIFNtau gene up-regulated during the preimplantation period. 5'-Flanking regions of the oIFNtau010 gene, 2 kb and 0.8 kb, were cloned into a basic chloramphenicol acetyltransferase reporter plasmid. These oIFNtau010 promoter constructs, along with expression controls, were transfected into human choriocarcinoma cells (JAR and JEG3) and their responsiveness to hGM-CSF and second messenger system activators including PMA, calcium ionophore (A23187) and 8-bromo-cAMP were characterized. The oIFNtau010 promoter constructs were up-regulated by hGM-CSF and PMA treatments (P<0.01). Combined treatment with PMA and A23187 prevented the promoter activation seen with PMA alone. The conceptus culture data, along with the results from the transfection experiments, suggest that the stimulatory effect of GM-CSF on oIFNtau is mediated through the PKC second messenger system.

Animals↗

Identification and cellular localization of unique interferon mRNA from human placenta.

Although constitutive expression of trophoblast or pregnancy-associated interferon (IFN) has long been recognized, their cDNA sequences have been determined for only ruminant ungulates. Here we show a human trophoblast IFN (htIFN) cDNA whose nucleotide sequence is very similar (85% identity) to that of ovine and bovine trophoblast IFNs, IFN tau s. Like ruminant IFN tau s, htIFN cDNAs contain an open reading frame of 195 codons including a signal sequence of 23 amino acids, resulting in a mature polypeptide of 172 amino acids. The deduced amino acid sequence of htIFN shares 73, 62, and 56% identities with ovine IFN tau, human IFN alpha II, and human IFN alpha I, respectively. However, the expression of htIFN is not limited to a specific period of pregnancy because transcripts of htIFN genes are detected in human lymphocytes, cells obtained by amniocentesis (amniocytes), first trimester, and term placentas. Human trophoblast IFN mRNA is localized mainly in extravillous trophoblasts cells of placental villi, particularly in the migrating cytotrophoblasts cells, which eventually replace maternal endothelial cells in spiral arteries of the decidua. Both sense and antisense mRNAs for human IFN alpha II are localized in the outer layer of villous structures. Coexistence of these mRNAs at the placental villi throughout pregnancy suggests that, in addition to a role in placental cell growth and differentiation, IFNs may play a role protecting the fetus in viral environments.

Amino Acid Sequence↗

Detection of mRNA for inhibin alpha- and beta A-subunits in bovine ovarian tissues and the effect of in vivo administration of GNRH.

The aims of these studies were to determine which types of bovine ovarian tissue contain mRNA for inhibin/activin subunits and whether administration of GnRH influences concentration of these mRNAs. In experiment (exp.) one, cows in the luteal phase of the estrous cycle were given prostaglandin F2 alpha (PGF2 alpha) to induce luteal regression and injected after 40 hr with saline (n = 5) or 100 micrograms GnRH (n = 6). Ovaries were removed 6 hr later. In exp. two, unilaterally ovariectomized (OVX) heifers (n = 33) in the luteal phase of their estrous cycle were given PGF2 alpha to induce luteal regression. Twelve heifers were OVX without injection of GnRH at 24 (n = 6) or 40 hr (n = 6) after PGF2 alpha. The remaining heifers (n = 21) were given 100 micrograms GnRH at 40 hr after PGF2 alpha injection and OVX 8 (n = 4), 16 (n = 5), 24 (n = 6) or 48 (n = 6) hr after GnRH injection. Total cellular RNA was isolated from large follicles (exp. one and two), small-medium follicles and stromal tissue (SMS) and corpora lutea (CL; exp. one) tissues and analyzed by dot blot and Northern blot techniques by hybridizing with cDNA probes for human inhibin/activin alpha- and beta A-subunits. Large follicles were classified as steroidogenically active (EA) if follicular fluid (FF) concentration of estradiol-17 beta (E2) was greater than progesterone (P4), or if P4 and E2 concentrations in FF were greater than 100 ng/ml, and estrogen inactive (EI) if FF concentration of E2 and P4 did not satisfy these criteria. In exp. one, mRNA for the alpha-subunit was primarily expressed in EA follicles, and detectable in EI follicles, SMS, and CL while beta A-subunit mRNA was detected only in large EA follicles and a few SMS samples. The mRNA (x +/- SEM fmoles/mg DNA) for both subunits of inhibin/activin was higher (P < .05) in EA follicles from GnRH-treated cows (alpha = 210.2 +/- 38.6; beta A = 376.9 +/- 41.0) than in EA follicles from control cows (alpha = 102.5 +/- 28.6; beta A = 170.8 +/- 57.6). Concentration of mRNA for the alpha-subunit of inhibin in other ovarian tissues was not different (P > .10) between saline and GnRH treatments.(ABSTRACT TRUNCATED AT 400 WORDS)

Activins↗

Differential expression of distinct mRNAs for ovine trophoblast protein-1 and related sheep type I interferons.

An antiluteolytic substance secreted by the ovine conceptus and primarily responsible for maternal recognition of pregnancy is ovine trophoblast protein-1 (oTP-1), a new type I interferon (IFN). The objectives of this research were 1) to investigate whether multiple, distinct genes encode oTP-1 and other type I IFNs in the ovine genome and 2) to examine expression of oTP-1 and other IFN mRNAs during conceptus development. Genes for type I IFNs were isolated from a subgenomic library constructed from Day 25 (Day 0 = estrus) ovine conceptus high-molecular-weight DNA. Six clones were isolated and nucleotide-sequenced from -1000 to +900 (bases relative to cap site). Comparisons of inferred amino acid sequences demonstrated that four clones were distinct oTP-1 genes and that two clones, defined as o9 and o12, were related type 1 IFNs (deduced aa homology of o9 and o12 to oTP-1 was 71% and 54%, respectively). The presence of mRNAs encoded by oTP-1 and type I IFN genes was examined quantitatively via reverse transcription-polymerase chain reaction (RT-PCR) analysis of total cellular RNA (tcRNA) extracted from Day 13-45 concepti. Total cellular RNA obtained from Day 75 placenta and adult lymphocytes was also analyzed by RT-PCR, coupled with Southern blot hybridization of the PCR reaction products with specific DNA probes. PCR products were sequenced in order to confirm primer specificity, and mRNAs corresponding to two of the four oTP-1 genes and to both related IFN clones (o9 and o12) were identified. Furthermore, quantitation of the PCR products revealed that of the two oTP-1 genes examined, one was highly expressed on Days 13-20 and transcripts were weakly detectable on Days 30 and 45. In contrast, the other oTP-1 gene examined was weakly expressed on Days 13-20 only. Densitometric analysis of hybridization signals revealed that IFN o9 mRNA was detected in Day 75 placenta but only weakly detected in conceptus (Days 13-45) and adult lymphocytes. IFN o12 mRNA was abundant in lymphocytes relative to the other tissues examined. Collectively, these results demonstrate the existence of distinct oTP-1 and related type I IFN genes. The data suggest that these genes display differential, tissue-specific expression and developmental regulation during pregnancy.

Amino Acid Sequence↗