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W Heyns

Publications and source records attributed to W Heyns.

At least 55 records · Page 3Linked to original sources

Androgen-dependent expression of cystatin-related protein (CRP) in the exorbital lacrimal gland of the rat.

Cystatin-related protein (CRP), also known as 20 (22)-kDa glycoprotein is expressed not only in the ventral prostate, but also in the lacrimal gland of adult male rats. In this study the expression of CRP in androgen-treated female animals is studied. CRP mRNA is absent in the lacrimal gland of untreated adult female rats, but can be induced by androgens, although this induction is slower than in castrated male rats. Estradiol, progesterone or glucocorticoids have no effect. In testicular feminized rats, however, CRP mRNA is not induced in the lacrimal gland by androgens. At the protein level, the presence of CRP in tears of adult male rats is demonstrated. In female animals or castrated male animals CRP can be induced by androgens in a dose-dependent way. Here also the induction is slower in female rats, even during secondary induction after previous full stimulation by androgens. These results indicate that androgens and a functionally normal androgen receptor are essential for the expression of CRP in the lacrimal gland. The time course of induction depends on the dose of androgens, the previous contact with androgens, the duration of the androgen-free interval and the sex of the animals.

Androgen-Insensitivity Syndrome↗

Structure of rat genes encoding androgen-regulated cystatin-related proteins (CRPs): a new member of the cystatin superfamily.

Cystatin-related proteins (CRPs) are abundant androgen-regulated secretory glycoproteins that are specifically synthesized in the ventral prostate and lachrymal gland of the rat. Two complete 6-kb genes, Crp1 and Crp2, have been cloned and characterized. They are differentially expressed and encode slightly different proteins. The genes each contain four exons which are interrupted by large introns. An alignment of their sequences demonstrates an overall homology of 90%. The 3' end of a third gene, Crp3, from which only a 1.5-kb fragment was isolated, displays a sequence identity of 84%. These data indicate the existence of a Crp multigene family. The 5' flanking regions of Crp1 and Crp2 are highly homologous and contain a GATAAA sequence 29 nt upstream from the transcription start point. This TATA-box-like element is also found in the promoters of the genes encoding cystatin type-2 proteins. No other recognizable transcription control elements can be detected. Potential binding sites (ARE) for the androgen receptor are scattered throughout the entire genes. The exon/intron organization of the genes encoding CRPs, the size of the exons and their encoding amino acid sequences exhibiting a characteristic spacing of the Cys residues are structural elements displaying a remarkable similarity with the corresponding elements in the genes encoding cystatin type-2 proteins. CRPs must therefore belong to the cystatin superfamily. However, due to their additional domain encoded in an extra exon 2, CRPs must be classified as a new family, type 5.

Amino Acid Sequence↗

Intronic androgen response elements of prostatic binding protein genes.

Transcription of the genes that code for the different components of Prostatic Binding Protein is dependent on androgens. DNA-cellulose competition assays have demonstrated the presence of regions with affinity for the androgen receptor located immediately upstream and in the first intron of these genes. DNase I footprinting in vitro now reveals the exact binding site of a receptor dimer in the first intron of the C3(1), C3(2) and C1 genes. Gene transfer experiments resulted in the description of functional androgen response elements in the C3 genes. The C1 intronic binding site, however, has a much weaker affinity for the DNA-binding domain of the androgen receptor, a characteristic that might explain its inability to function as an androgen response element in chimeric gene constructs.

Androgen-Binding Protein↗

Interaction of androgen and glucocorticoid receptor DNA-binding domains with their response elements.

Fusion proteins containing the glucocorticoid and the androgen receptor DNA-binding domain (ARF1 and GRF1) were produced in Escherichia coli. DNAse I footprinting was used to compare the interaction of these proteins with responsive elements (REs) in a typically glucocorticoid-responsive gene (mouse mammary tumour virus (MMTV)) and in an androgen-responsive gene (the C3(1) gene of rat prostatic binding protein). It is demonstrated that response elements which most closely resemble the consensus sequence show identical footprinting patterns for ARF1 and GRF1. The protected regions suggest that these sequences are occupied by two DNA-binding domains (DBDs) forming a dimer. Regions that constitute imperfect RE sequences, however, are apparently recognized by only one DBD, which mainly protects the TGTTCT motif. At these REs, the protection patterns produced by ARF1 and GRF1 are not identical. In the long terminal repeat (LTR) of MMTV but not in C3(1), a mechanism other than classical dimer formation seems to increase the affinity of ARF1 and GFR1 for these imperfect REs.

Androgen-Binding Protein↗

Proteins interacting with an androgen-responsive unit in the C3(1) gene intron.

The expression of the three genes encoding the components C1, C2 and C3 of prostatic binding protein (PBP) is under androgen control and restricted to the rat ventral prostate. The SstI-PvuII fragment of the first intron of the C3(1) gene displays two binding sites for ubiquitous transcription factors and one for a tissue-specific factor in a 80-bp region upstream of its androgen response element (ARE). The octamer transcription factor 1 (OTF-1) binds to the most distal element (site 1) while a member of the nuclear factor I (NF-I) family recognizes site 2. A third unidentified prostate-specific factor, which also occurs in castrated rats, interacts with the proximal element (site 3). In T-47D cells, both the OTF-1 and the NF-I-like factor can modulate the androgen response of the promoter in a reporter gene construct containing the C3(1) intronic fragment.

Androgen-Binding Protein↗

An effect of androgens on the length of the poly(A)-tail and alternative splicing cause size heterogeneity of the messenger ribonucleic acids encoding cystatin-related protein.

The 22-kilodalton glycoprotein, expressed in the rat ventral prostate under the influence of androgens, is structurally a cystatin-related protein (CRP), as has been shown by copy DNA sequencing. In fact, two slightly different forms (CRP-1 and CRP-2) are expressed in the prostate; one of them (CRP-1) is also expressed in the exorbital lacrymal gland. In both glands, the CRP-1 messenger RNA (mRNA)s are androgen regulated. Moreover, androgens also influence the size of these mRNAs, which show marked heterogeneity (from 760-950 nucleotides). Indeed, the smaller forms are predominant in castrated animals, whereas the large forms are observed immediately after androgen induction. Hybridization with oligo(dT) followed by ribonuclease H treatment revealed that differences in length of the poly(A)-tail are responsible for this effect of androgens. Indeed, two well defined forms of CRP mRNA subsisted after removal of the poly(A)-tail by this treatment. In the less abundant shorter form (CRP-1 delta), 123 nucleotides are deleted by alternative splicing at the junction between the third and the fourth exon. The variant mRNA encodes a truncated protein, wherein the last 27 amino acids are replaced by a hydrophobic stretch of 8 amino acids. No alternative splicing was observed for the CRP-2 mRNA.

Alternative Splicing↗

The 4.4-kilodalton proline-rich polypeptides of the rat ventral prostate are the proteolytic products of a 637-kilodalton protein displaying highly repetitive sequences and encoded in a single exon.

We have determined the complete sequence of the 637-kilodalton precursor for the proline-rich polypeptides (PRPs). This protein is encoded in one large exon of a single copy gene. The acidic precursor of 5761 residues comprises a signal peptide and three large domains displaying a high proline content (11-15%). The sequence of domain A (928 residues) is unique and contains several small clusters of acidic amino acids. Domain B (830 residues) exhibits seven tandem repeats, four of them displaying a strongly diverged sequence. In domain C (3914 residues) 39 units, of which only 8 are degenerate, occur in a tandem repeat. Their sequence of 100 amino acids shows a high structural similarity (76-92%) and contains all the PRP variants which are produced by specific proteolytic processing. The COOH-terminal part (35 residues) is basic. Two variant PRP-precursor alleles occur which slightly differ in the number of repeats in domain C. The high degree of sequence conservation within the repeat regions suggests that the gene presumably evolved by multiple amplification and dispersion of two internal segments. In the 5097-base pair genomic region 5' upstream from the translation start, several control elements for transcription are recognized. A potential binding site for the Sp1 factor (GGGCGG) separated by 47 nucleotides from an initiator motif, most probably elements of the promoter, is detected in the vicinity of the ATG codon. Several putative androgen response elements (TGTYCT) are found in the 5' adjacent region and far upstream two Alu type III repeats and two (CA)n repeats are located. These results provide the basis for a detailed study of the androgen-regulated and tissue-specific expression of the PRP-precursor gene.

Amino Acid Sequence↗

Interaction of the 90-kDa heat shock protein with native and in vitro translated androgen receptor and receptor fragments.

Androgen receptor (AR) from rat ventral prostate and AR synthesized in vitro by translation in rabbit reticulocyte lysate of AR mRNA, transcribed from a pGEM-4Z DNA template were compared by gel permeation chromatography and by sucrose gradient ultracentrifugation. Under non-activating conditions the AR from rat prostate migrated as an 8-9 S complex of approx. 300 kDa. The addition of chicken antibodies against HSP90 shifted this complex to the void volume of the column or to the bottom of the ultracentrifugation gradient. Under activating conditions, on the other hand, the AR migrated as a 110 kDa, 5.2 S protein and was no longer displaced by HSP90 antibodies. Under all these conditions, the behaviour of in vitro synthesized AR was very similar to that of AR from rat prostate. By selective use of restriction enzymes on the template of transcription AR mutants could be prepared from which an increasing part was deleted at their carboxy terminal end. The interaction with HSP90 was conserved for AR1-758 missing the last 145 amino acids, but was lost in AR1-703. Furthermore, a large internal deletion (ARd41-469) of the major part of the amino terminal half of the AR did not result in the loss of HSP90 binding. These results indicate that a specific subregion (amino acids 704-758) of the carboxy terminal half of the AR is required for the interaction with HSP90.

Animals↗

The role of cell-cell interactions in androgen action.

Androgen-regulated mesenchymal-epithelial interactions play an important role during embryonic development of the male urogenital tractus. Studies on the effects of androgens on cultured testicular cells derived from the immature rat testis indicate that, even during postnatal life, similar interactions may be instrumental for normal androgen action. Androgen receptors are found in epithelial Sertoli cells as well as in mesenchymal peritubular cells. The effects of androgens on isolated Sertoli cells, however, are limited. Coculture with peritubular cells increases the sensitivity and/or the responsiveness of a number of Sertoli cell parameters (transferrin, ABP, aromatase activity) to androgens. This effect is at least in part mediated by the secretion of one or more diffusible factors (P-Mod-S) by the peritubular cells. We investigated whether such indirect effects of androgens, relying on mesenchymal-epithelial interactions are also observed in other androgen target tissues. To this end stromal cells were isolated and cultured from the immature rat ventral prostate and the production of factors with P-Mod-S activity was monitored using Sertoli cells as the test system. Under coculture conditions these stromal cells stimulate Sertoli cell transferrin secretion in an androgen-regulated fashion, exactly as peritubular cells. This stimulatory effect is related in part to the collaborative (and androgen-independent) deposition of an extracellular matrix and in part to the secretion of an androgen-regulated diffusible mediator. This mediator has the same physicochemical characteristics as P-Mod-S and it affects other Sertoli cell parameters (ABP, aromatase activity, inhibin, cGMP) in the same way as P-Mod-S. Cultured stromal and peritubular cells look very similar and stain positive after immunostaining for alpha-smooth muscle isoactin. Tissue sections suggest that these cells may be derived from myoid peritubular cells in the testis and similar periacinar cells in the prostate. The hypothesis is advanced that P-Mod-S may be a more universal mediator of indirect effects of androgens in diverse target tissues and that this factor is derived from myoid cells closely associated with the epithelial component.

Animals↗

Genetic variation of human sex hormone-binding globulin: evidence for a worldwide bi-allelic gene.

Genetic variation of human sex hormone-binding globulin (SHBG) has been investigated on 1690 unrelated neuraminidase-treated serum samples using isoelectric focusing followed by transfer to nitrocellulose membranes and immunostaining. Three clearly distinct isoelectric focusing patterns, consistent with the expression of an autosomal genetic system, were identified. Using allele frequencies, calculated on the basis of a bi-allelic gene, an excellent agreement between observed and expected phenotype numbers was obtained in every examined population sample. Family data along with the observed distribution of the three SHBG phenotypes among racially different groups and sexes indicate that SHBG is worldwide encoded by two autosomal codominant alleles. Compared with healthy Belgian blood donors no statistically significant differences were noted for the allele frequencies among 399 patients and 70 hirsute women of Belgian origin. Evidence is also presented that the subunit produced by the variant allele (SHBG2) has a higher molecular mass than the one produced by the regular allele (SHBG1) and that the three SHBG genotypes have identical binding characteristics for 5 alpha-dihydrotestosterone.

Alleles↗

Homologous radioimmunoassay of human osteocalcin.

Osteocalcin or bone gamma-glutamic acid-containing protein (GLA protein) was isolated from human bone and used to develop a homologous radioimmunoassay of human osteocalcin. The effect of age on serum osteocalcin was studied in 380 normal children and adolescents and 330 normal adults. The mean (+/- SD) values in adults were higher in men [25 +/- 5 micrograms/L (4.3 +/- 0.8 nmol/L)] than in premenopausal women [20 +/- 6 micrograms/L (3.4 +/- 1.0 nmol/L); P < 0.01], but both were lower than in postmenopausal women [29 +/- 2 micrograms/L (5.0 nmol/L)]. The highest concentrations were seen in girls [ages 10-12 years: 99 +/- 38 micrograms/L (17.0 nmol/L)] and boys [ages 14-16 years: 107 +/- 57 micrograms/L (18.4 nmol/L)]. These mean values were substantially higher than those previously reported for results of heterologous osteocalcin radioimmunoassays but the correlation (r = 0.87, n = 77, P < 0.001) between both sets of results was excellent. In patients with metabolic bone diseases characterized by high or low bone turnover, the increase or decrease in serum osteocalcin observed was as expected. This homologous radioimmunoassay of human osteocalcin thus reflects bone turnover but reports serum concentrations higher than previously suspected.

Adolescent↗

Interaction of androgen response elements with the DNA-binding domain of the rat androgen receptor expressed in Escherichia coli.

A fragment of the rat androgen receptor (amino acids 533-637) containing the DNA-binding domain was produced in Escherichia coli as a fusion product with protein A of Staphylococcus aureus. The fusion protein was purified on IgG-Sepharose, a method that does not involve the use of denaturing agents. Approximately 4 mg of fusion protein was obtained from 500 ml of bacterial culture. In gel shift assays, the recombinant DNA-binding domain displays an affinity for a fragment of the long terminal repeat of mouse mammary tumor virus and for an intronic fragment of the gene coding for the C3 component of the androgen-regulated rat prostatic binding protein. In a DNase I footprinting assay, the fusion protein protects a sequence in the C3 fragment that has previously been shown to act as a functional androgen response element. Interestingly, a single base pair mutation in the response element, which abolishes androgen inducibility, also destroys the ability to interact with the recombinant androgen receptor DNA-binding domain.

Androgens↗

Morphological and functional similarities between cultured prostatic stromal cells and testicular peritubular myoid cells.

A number of androgen effects on epithelial cells may be mediated by androgen-regulated paracrine factors produced by underlying mesenchymal cells. In previous studies we demonstrated that prostatic stromal cells and testicular peritubular cells, derived from immature rats, produce mediators of androgen action with identical effects on Sertoli cells. In the present paper we further compared the morphological and functional characteristics of both mesenchymal cell types. Cultured prostatic stromal cells and testicular peritubular cells look identical under phase-contrast microscopy, share the ability to form tubular structures and "balls" when cocultured with Sertoli cells, and contain proteins immunoreactive with an antiserum against alpha-smooth muscle isoactin. Two-dimensional gel electrophoresis shows that the pattern of proteins produced by both cell types is nearly identical. Conditioned media from stromal and peritubular cells contain a factor that stimulates transferrin and cGMP production in Sertoli cells. The behavior of the active principle in the media from both cell types is comparable. On reverse-phase HPLC the elution profile of this factor is comparable for media from both cell types. In conclusion, these data point to a striking similarity in the morphological and functional characteristics of mesenchymal cells cultured from the prostate and testis.

Animals↗

Antibodies against synthetic peptides recognize the human and rat androgen receptor.

Antibodies against two synthetic peptides (aa 299-311 and aa 544-559) selected in different immunogenic domains of the human AR, were induced in rabbits. Antiserum reactivity against the native receptor was investigated by gel permeation chromatography and sucrose density gradient centrifugation using [3H]mibolerone-labeled rat prostate cytosol and [3H]5 alpha-dihydrotestosterone-labeled T-47D cytosol as a source of AR. The absence of cross-reactivity of the antisera with estrogen, progesterone and glucocorticoid receptor was confirmed by density gradient centrifugation of rat uterus cytosol labeled with [3H]E2 or [3H]ORG 2058 and rat liver cytosol labeled with [3H]dexamethasone. After partial proteolytic breakdown of rat prostate AR by endogenous proteases the steroid-labeled receptor was recognized only by the second peptide (aa 544-559) antibody. This proteolytic breakdown could be prevented to a large degree by addition of a high concentration of soybean trypsin inhibitor. The specific AR antibodies provide new tools for the functional analysis of AR, since they interact selectively with specific domains of the receptor.

Amino Acid Sequence↗

Androgen-regulated proteins in the rat ventral prostate.

The rat ventral prostate synthetizes and secretes a number of relatively abundant proteins, such as Prostatic Binding Protein (PBP), the Proline-Rich Polypeptides (PRP), the 20 or 22-kDa protein and a prostatic protease, which respectively constitute approx. 50, 5, 10 and 2% of the secreted protein. The synthesis of these proteins is androgen-regulated and this is also the case for the concentration of the corresponding mRNAs. The existence of a putative androgen response element in the first intron of the PBP-C3 gene supports the possibility of a direct control of its transcription by androgen receptor complexes, but there is also evidence for the requirement of protein synthesis for mRNA stimulation. Finally, changes of tissue composition and cell-cell interactions between epithelial and stromal cells most probably play an important role in the global effect of androgens on the rat ventral prostate.

Androgens↗

Prostatic stromal cells and testicular peritubular cells produce similar paracrine mediators of androgen action.

The role of mesenchymal-epithelial interactions in androgen action was explored using Sertoli cells as the epithelial cells and testicular peritubular cells or prostatic stromal cells as mesenchymal cells. Footsole fibroblasts served as a control. The secretion of transferrin was used as an androgen-regulated parameter of Sertoli cell function. It is demonstrated that coculture of peritubular or stromal cells with Sertoli cells markedly increases the production of transferrin. This effect requires a 4-day latent period and is maximal with low concentrations (10%) of mesenchymal cells. Stimulatory effects of androgens can only be demonstrated at suboptimal concentrations of the latter cells. Fibroblasts are inactive. At least two mechanisms contribute to these stimulatory effects. Peritubular cells and stromal cells share the ability to promote the deposition of an extracellular matrix when cocultured with Sertoli cells. When Sertoli cells are seeded on this matrix, the production of transferrin is increased. This effect requires no latent period and is independent of the presence of androgens during the period of matrix deposition. In addition, peritubular cells and stromal cells produce diffusible mediators which increase transferrin production by Sertoli cells. In both cell types, the production of these mediators is controlled by androgens, and their action is preceded by a 4-day latency period. The mediators have a comparable mol wt (45,000) and resemble P Mod-S, known to be secreted by peritubular cells. These data suggest that mesenchymal-epithelial interactions play a role in androgen-supported maintenance of adult function and that mesenchymal tissue from different androgen target tissues produces similar or identical mediators of androgen action.

Androgens↗