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Biomedical subjects

A J Molenaar

Publications and source records attributed to A J Molenaar.

16 recordsLinked to original sources

STAT5 binding contributes to lactational stimulation of promoter III expressing the bovine acetyl-CoA carboxylase alpha-encoding gene in the mammary gland.

Activity of acetyl-CoA carboxylase (ACC)-alpha is rate limiting for de novo synthesis of fatty acids. The encoding gene is expressed by three different promoters. We characterized promoter III (PIII) from cow, previously only known from sheep. Quantitation of transcripts by RNAse protection assays and real time PCR revealed that PIII is primarily expressed and strongly induced ( approximately 28-fold) in the lactating mammary gland. PIII transcripts are expressed in mammary epithelial cells (MEC) as shown by in situ hybridization. A 2999 bp segment of the PIII promoter conferred prolactin and dexamethasone inducibility to a luciferase reporter gene in stably transfected mouse MEC cells. Lactogenic induction was abolished if a unique signal transducer and activator of transcription (STAT)-binding site at position -797 was inactivated by two point mutations. An oligonucleotide probe harboring this STAT-site specifically bound nuclear proteins from the lactating mammary gland. Binding was abolished by those two point mutations and super-shift analyses showed that STAT5A factors are present in this complex. Hence, prolactin, acting through STAT5, contributes to the activation of ACC expression in the milk producing cells of the lactating mammary gland. We discuss that STAT5 might be important in determining the milk composition by coordinating fatty acid and protein synthesis during lactation.

Acetyl-CoA Carboxylase↗

Nuclear localisation of the transcription factor Stat5b is associated with ovine milk protein gene expression during lactation but not during late pregnancy or forced weaning.

Localisation patterns of the transcription factor Stat5b in the udders from pregnant, lactating and involuting ewes were compared with the expression patterns of two major milk protein genes alpha-lactalbumin and alphaS1 casein. Stat5b was detected in the cytoplasm and nuclei of epithelial cells at all stages of mammary gland development. A consistent positive relationship between the nuclear localisation of Stat5b in lactating mammary alveolar epithelial cells, and the presence of milk protein gene mRNA was apparent during lactation and early involution. Conversely, there was little evidence of nuclear localisation of Stat5b in non-lactating mammary alveolar epithelial cells during lactation and early involution. This supports the observation that during lactation, Stat5b may play a role in milk protein gene expression. However, during pregnancy and later involution, while Stat5b was observed to be present in mammary epithelial cell nuclei and cytoplasm, no relationship between this and the presence of milk protein gene mRNA was apparent. This suggests that during late pregnancy and in later involution, Stat5b may be involved in processes other than initiation of milk protein gene transcription.

Animals↗

Mammary Stat5 abundance and activity are not altered with lactation state in cows.

Stat5 is a key intracellular mediator of prolactin signalling and can activate transcription of milk proteins in response to prolactin. Therefore, in animals such as mice where lactation is dependent on prolactin, Stat5 is likely to play an important role in establishing or maintaining lactation in the mammary gland. However, little is known about its role in lactation in the dairy cow. In order to address this, the levels of Stat5a and Stat5b protein, mRNA and Stat5 DNA-binding activity were measured in mammary tissue from mice and cows at different lactational states. In the cow, Stat5a and Stat5b protein and mRNA levels, as well as Stat5 DNA-binding activity were unaltered between pregnancy and established lactation. In contrast, in the mouse Stat5a and Stat5b protein, as well as Stat5 DNA-binding activity were clearly increased during lactation whereas Stat5a and Stat5b mRNA levels were highest during pregnancy as has been previously described. In both species only a minority of the epithelial cell nuclei were Stat5 positive during established lactation. These results suggest that there are significant differences in the biological role of Stat5 in controlling lactation between ruminants and rodents.

Animals↗

An improved method for the routine biopsy of bovine mammary tissue.

Eight primiparous cows in midlactation were used to determine a method for the mammary biopsy of standing cows in full lactation. Cows were mildly sedated; therefore, preoperative feed withdrawal was not necessary. A core of secretory tissue (0.75 to 1 g) was extracted using a rotating stainless steel cannula with a retractable blade at the cutting edge. Postoperative recovery was rapid, taking only 15 min per cow, and the method was reliable and efficient. The presence of secretory tissue was verified by histology and in situ hybridization with alpha s1-casein and alpha-lactalbumin probes. The capsular end of the core contained more connective tissue, and the parenchyma showed heterogeneous expression of alpha s1-casein and alpha-lactalbumin. Despite some postoperative bleeding, milk yield and composition in the biopsied gland were affected only transiently. Yield recovered by 3.5 d after biopsy, and composition recovered by 6.5 d after biopsy. Yield and composition of milk from the control glands were not affected by the procedure. Biopsy sites healed rapidly and without infection. No clinical mastitis was observed in any of the biopsied cows throughout the remainder of the lactation.

Animals↗

Elevation of lactoferrin gene expression in developing, ductal, resting, and regressing parenchymal epithelium of the ruminant mammary gland.

Accumulation of lactoferrin mRNA in mammary tissue from virgin, pregnant, lactating, and involuting ewes and cows was localized using 35S-labeled cRNA probes. Expression of lactoferrin was low in the glands of virgin animals. In the glands of animals in early pregnancy, very high expression occurred in the ducts and immature alveoli, but expression tended to decrease as the alveoli matured. In the lactating and involuting gland, expression was generally low or absent in actively secreting alveoli and high in alveoli that had an accumulation of vesicles in the lumen and secretory epithelium, which was indicative of stasis. Occasionally, expression of lactoferrin was seen in cells that appeared to be secretory, particularly in involuting glands. Lactoferrin mRNA was expressed not only at different sites from other milk protein genes, such as alpha-lactalbumin and alpha s1-casein, but also during different stages of mammary development, supporting the view that the expression of lactoferrin is regulated differently from that of other milk proteins. For all ewes and cows, lactoferrin mRNA was detected in the epithelial ducts of the mammary parenchyma and the teat in a gradient that increased in ducts nearer the teats. The expression of lactoferrin in the ductal epithelium close to the teat was consistent with the antibacterial role of lactoferrin.

Animals↗

Expression of the butyrophilin gene, a milk fat globule membrane protein, is associated with the expression of the alpha S1casein gene.

Previous in situ hybridization studies from our laboratory have shown that expression of certain milk protein genes, e.g. alpha-lactalbumin, is very high in most parts of the mammary glands of sheep and cattle, while in other areas containing an abundance of fat globules it is virtually zero (Molenaar et al., 1992). One possible explanation is that some areas of the mammary gland are dedicated to protein synthesis and some to fat synthesis. To check this possibility, the cRNA for butyrophilin, a milk-fat globule membrane protein, and hence a putative marker of milk fat synthesis, was used as a probe in in situ hybridization studies. The results show quite clearly that the patterns of expression for this gene are similar, cell type for cell type, as those for milk protein genes such as alpha-lactalbumin and alpha S1casein. In addition, we found that butyrophilin gene expression more closely matches that of alpha S1casein than that of alpha-lactalbumin. If it is shown in the future that butyrophilin is indeed a marker for milk fat synthesis, then these results support the current assumption that fat and protein synthesis do occur in the same cell.

Animals↗

Spatial and temporal expression of transferrin gene in the rat mammary gland.

The distribution and concentration of transferrin mRNA in the rat mammary gland was analyzed using in situ hybridization, and the results were compared with those obtained for other milk protein mRNA. The [35S]RNA probes prepared from rat cDNA for transferrin and for alpha-, beta-, and gamma-caseins, alpha-lactalbumin, and whey acidic protein were used to probe mammary tissue from rats in late pregnancy and at different stages of lactation. The overall level of transferrin gene expression varied in a biphasic manner, decreasing after parturition to barely detectable levels at d 2 to 10 of lactation before increasing again markedly in late lactation. This temporal pattern contrasts sharply with that observed for the other genes, for which levels tended to rise or to remain relatively stable until late lactation. The spatial patterns of transferrin expression were also quite distinct, and, even during the period of low expression, some alveoli showed high concentrations of transferrin mRNA. In contrast, intramammary distribution of mRNA for the other genes was relatively uniform. Our results show that the patterns of transferrin gene expression differ both spatially and temporally from those of five other milk protein genes and suggest that transferrin gene expression is controlled by a regulatory system that turns individual alveoli either fully on or fully off.

Animals↗

Insulin-like growth factor II messenger ribonucleic acid expression in Wilms tumor, nephrogenic rest, and kidney.

BACKGROUND: Wilms tumors (WTs) are embryonic neoplasms of the kidney that are believed to arise from primitive metanephrogenic blastema. Our previous reports and those of others indicate that WTs show an increased expression of insulin-like growth factor II (IGF-II) mRNA. However, the precise role of IGF-II on Wilms tumorigenesis is not known. A central question is to determine whether the increased IGF-II expression in WTs simply reflects the fetal nature of WTs (effect), or is induced by specific changes in gene expression (cause). EXPERIMENTAL DESIGN: This study included 31 sporadic WTs, 7 fetal and 3 adult kidneys and 1 yolk sac tumor. Clinical and histologic summaries of WT cases are shown in Table 1. In WTs, the relative area of blastemal, epithelial, poorly differentiated spindle cell and heterologous cell components were assessed. Dot and Northern blot hybridization, using cDNA probes, were done to assess the level of IGF-II mRNA expression. In situ RNA hybridization was employed to localize IGF-II transcripts. Immunohistochemistry was applied to frozen sections to demonstrate cytokeratin and type-IV collagen. These results were then correlated with the histology of WTs and their precursor lesions, i.e., nephrogenic rests (NRs). RESULTS: Dot blot hybridization indicated that IGF-II transcripts were 32- to 64-fold more abundant in WTs than in the adjacent uninvolved kidneys. In situ hybridization showed that WTs, NRs, and fetal kidney shared a common feature in which IGF-II transcripts were predominantly associated with blastema. However, WTs and NRs differed from fetal kidney in that occasional epithelial structures and dense blastema showed aberrant, sustained IGF-II expression. CONCLUSIONS: The data indicate two points. 1) There is an inverse correlation between nephroblastic differentiation and IGF-II expression in developing fetal kidney. 2) The IGF-II expression in WTs and NRs does not simply reflect the embryonal nature of the tumor but is rather significantly altered, suggesting a role as a transforming growth factor in Wilms tumorigenesis.

Adolescent↗

Expression of alpha-lactalbumin, alpha-S1-casein, and lactoferrin genes is heterogeneous in sheep and cattle mammary tissue.

We used 35S-labeled cRNA probes to localize the sites of alpha-lactalbumin, alpha-S1-casein, and lactoferrin mRNA synthesis in sheep and forcibly weaned cattle mammary tissue. Expression of alpha-lactalbumin was absent in three of four "virgin" glands studied, present in some alveoli of "pregnant" glands but not in others, despite a similar histological appearance. In the early lactating gland, expression was high in those alveoli with few fat globules in their cells and lumen and was absent in alveoli with abundant fat globules. These observations suggest either that alpha-lactalbumin gene expression is linked to the long-term secretory activity of cells and falls once cells are resting or regressing, or that there are cyclical variations in expression, or that in the lactating gland some groups of epithelial cells are synthesizing alpha-lactalbumin and some are synthesizing fat. Expression patterns of alpha-S1-casein were similar to those of alpha-lactalbumin. Lactoferrin, in contrast, was expressed almost exclusively in the "fatty alveoli" of both species. Our results show that dramatic variations in milk gene expression can occur throughout the mammary gland of sheep and cattle and that at no stage of pregnancy, lactation, or involution can the gland be considered metabolically homogeneous.

Animals↗

Effects of a high-protein diet in acid maltase deficiency.

The effects of a high-protein diet were studied in 5 adult cases of acid maltase deficiency. Measurements of muscle strength, pulmonary function and 3-methylhistidine excretion revealed no improvement consistently attributable to the diet.

Dietary Proteins↗

Detection of human papillomavirus DNA in cervical lesions by in-situ DNA hybridization.

Authors examined paraffin sections of 50 cervical specimens from 34 cases for the presence of human papillomavirus (HPV) type 6b, 11, 16, 18, 31 and 33 by in-situ hybridization using 35S-labelled HPV DNA probes. Specimens were classified according to the degree of dysplasia after histological examination. Viral nucleic acids were detected in 30 of 50 tissues (60%) in which 15 specimens had single, 10 double, 4 triple and 1 quadruple viral infections. In some cases, different viral nucleic acids were detected at separate sites in the same patient. Overall, no great variation in the frequency of each HPV was detected, but a pattern became apparent when the frequencies were compared with the grade of dysplasia. CIN II/III lesions contained one or more of the HPV types 16, 18, 31, 33 which are frequently associated with cervical carcinoma. In-situ hybridization offers sensitive means of investigating viral infection, gene expression and neoplastic transformation.

Cervix Uteri↗

Detection of human papillomavirus DNA in anogenital exophytic lesions by in situ hybridization to paraffin sections.

In situ hybridization was used to detect human papillomavirus (HPV) nucleic acids (type 6b, 11, 16, 18, 31, and 33) and immunohistochemistry was done to detect papillomavirus common antigen in paraffin sections of biopsy specimens. Two patients suffering from condyloma acuminatum contained HPV-6b and HPV-11. Both cases showed small foci of the antigen-positive cells. One patient having condyloma acuminatum with dysplastic features contained a small quantity of HPV-16 without any antigen-positive cells. One case of verrucous carcinoma showed neither HPV-DNA nor antigen. In situ hybridization is a powerful tool in the analysis of the pathogenesis of HPV-associated neoplasms.

Adolescent↗

Zinc uptake into synaptosomes.

Zinc uptake was studied in synaptosomes, isolated by the Ficoll flotation technique, using the radiotracer 65Zn. True uptake of zinc could be discriminated from binding to the outside of the synaptosomes by the absence of accumulation at 0 degree C and the dependency of the rate of uptake on the medium osmolarity. The zinc uptake, studied in the presence of various zinc-complexing agents, showed saturation kinetics when analyzed in terms of [Zn]free, yielding Km = 0.25 microM. The zinc uptake was independent of both ATP and the Na+ gradient. No efflux of zinc could be demonstrated from preloaded synaptosomes due to the formation of insoluble zinc complexes inside the synaptosomes. The results are discussed in terms of the modulation of diverse neurochemical processes by zinc.

Adenosine Triphosphate↗