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Biomedical subjects

W Heyns

Publications and source records attributed to W Heyns.

At least 91 records · Page 5Linked to original sources

Different forms of alpha 2u-globulin in male and female rat urine.

alpha 2u-Globulin is usually considered to be present only in male rat urine. This study demonstrates that a very similar protein exists in female rat urine and compares its properties with those of the male form. Isoelectric focusing followed by immunofixation reveals considerable microheterogeneity of alpha 2u-globulin in male and female rat urine. Important sex differences are noted in the banding pattern. The isoelectric point of the major male component (pI approximately equal to 5.3) is considerably higher than that of the major female components (pI approximately equal to 4.6). In addition, the female form of alpha 2u-globulin has a somewhat higher mobility on sodium dodecyl sulphate/polyacrylamide gel electrophoresis than its male counterpart. These sex differences are preserved after purification of alpha 2u-globulin from male and female rat urine by affinity chromatography and enrichment of the major male and female components by ion-exchange chromatography. Immunologically no differences are observed between these purified components and their amino acid composition reveals only minor differences. A slightly higher carbohydrate content is observed in the major female component than in the major male component. Finally evidence is presented that oestrogen treatment suppresses the male forms of alpha 2u-globulin but has no effect on the female forms. The observed differences between the male and female forms and their different hormonal control suggest that they are encoded by different genes.

Alpha-Globulins↗

The nucleotide sequence of cDNA complementary to the C1 component of rat prostatic binding protein.

The mRNA for component C1 of rat prostatic binding protein has been cloned and characterized. A partially purified mRNA fraction for this complex protein was reverse-transcribed into double-stranded cDNA and cloned into the PstI site of plasmid pBR 322. The 426-base-pair insert of the recombinant plasmid pC1A75 was completely sequenced. The coding region corresponds precisely to the 88 amino acid residues of C1 and in addition contains the information of a signal peptide of 23 residues. The 5' non-coding region counts only 19 nucleotides and is incomplete but the 3'-terminal non-coding part of 60 nucleotides extends into the poly(A) tail. Sequence analysis of other C1-positive clones indicates the presence of sequence rearrangements which must have occurred during the cloning procedure. Possible mechanisms for the generation of these cloning artefacts are discussed.

Androgen-Binding Protein↗

Structural studies on rat prostatic binding protein. The primary structure of component C2 from subunit S.

The amino acid sequence of component C2, the polypeptide specific for subunit S of prostatic binding protein, the major secretory glycoprotein of the rat ventral prostate, has been determined. Its structure was established using the manual Edman degradation on the most relevant fragments obtained by enzymatic digestion of the S-carboxamidomethylated component C2 and the native subunit S and by chemical cleavage of the remaining undigestible 'cores' with cyanogen bromide. Component C2 contains 92 amino acids corresponding to a molecular weight of 10619. It is a slightly acidic polypeptide in which the acidic and basic residues are unevenly distributed. The N terminus is blocked and three cysteine residues are almost evenly distributed over the peptide chain. A highly polar region is found in position 23-34 and two hydrophobic segments are located in the C-terminal part of the molecule. Component C2 is compared with component C1 of subunit F and their high sequence homology reveals an evolutionary relationship.

Amino Acid Sequence↗

Multiple forms of the proline-rich polypeptide (PRP) bound to rat prostatic binding protein.

The proline-rich polypeptide, that is bound to rat prostatic binding protein displays a marked heterogeneity on isoelectric focusing, with major bands at pH 7.6 and pH 6.9. The same complex pattern is obtained for PRP prepared from prostates of individual rats from several strains. Using carboxymethylcellulose chromatography 6 different forms of PRP can be separated. Five of them have the same size (MW : 4000) and respectively glycine and lysine as N- and C-terminal amino acid. Their amino acid composition suggests that these forms differ by internal substitution respectively of aspartic acid and glycine and of proline and histidine. The sixth form (MW : 3500) lacks several amino acids at its N-terminal.

Amino Acids↗

A comparative study of estramustine and pregnenolone binding to prostatic binding protein: evidence for subunit cooperativity.

The binding of estramustine, a nitrogen mustard derivative of oestradiol to purified rat prostatic binding protein was studied as a test for a possible identity between this protein and the very similar estramustine-binding protein, described by Forsgren et al. In accordance with this hypothesis estramustine binds to purified prostatic binding protein with a high affinity (2.5 X 10(7)M-1). This affinity markedly exceeds the affinity of pregnenolone for this protein (0.9 X 10(6)M-1) or for a complex of prostatic binding protein, with prostatic proline-rich polypeptide, (4.7 X 10(6)M-1). In competition experiments estramustine completely suppresses the binding of [3H]pregnenolone, whereas the binding of [3H]estramustine is only partially suppressed by pregnenolone, even at high concentrations. Prostatic binding protein was separated in its F- and S-subunit by DEAE-Sepharose chromatography performed in the presence of 8 M urea. Only the S-subunit, most probably in its dimer form, displays marked estramustine and pregnenolone binding, with affinities of respectively 3.7 and 1.2 X 10(6)M-1. Recombination of both subunits results in a strong increase of estramustine binding, but not of pregnenolone binding.

Androgen-Binding Protein↗

Cortisol-free transcortin: preparation and effect on mitogen-stimulated lymphocytes.

Human cortisol-free transcortin was prepared from charcoal-treated serum. The major purification was achieved by affinity chromatography on an immunoadsorbent column of transcortin antibodies coupled to Sepharose 4B. A further purification on hydroxylapatite yielded pure transcortin with preserved steroid-binding activity. This preparation had no significant influence on the proliferation of human lymphocytes stimulated with phytohemagglutinin, nor did it increase the inhibition of lymphocyte proliferation by cortisol or dexamethasone.

Adult↗

Endocrine differences between the Wistar and Sprague-Dawley laboratory rat: influence of cold adaptation.

Sprague-Dawley (SD) rats kept at room temperature do have a higher growth rate and food conversion compared to Wistar rats. Mean hormone level in blood samples collected every four hours during a 24 hour period do differ between both strain of rats. So, the mean circulating levels of T3, T4 and corticosterone are significantly lower, whereas prolactin concentrations are higher in SD-rats. Following acute cold exposure comparable increases in plasma T3 and T4 are seen in both strains after 3-5 hours. Prolactin plasma concentrations are decreased after 5 and 9 hours but only in SD-rats, whereas they remain unchanged in Wistars. Acclimation to 4 degrees C during 3 and 8 weeks resulted in a decreased growth rate of the SD-rats, which becomes comparable to Wistar animals, but food conversion is lower and food intake higher in SD-rats. A decrease in circulating levels of T4 is present in Wistars resulting in a significantly lower figure at 8 weeks of cold acclimation, whereas at the same time T3 is increased. Prolactin is decreased in SD-rats and increased in Wistars causing at 8 weeks of cold acclimation higher levels in Wistars. Corticosterone levels remain higher in Wistar rats and are comparable to rats kept at room temperature. It is concluded that the differences in growth rate, food conversion and food intake are related to the endocrine differences and responses observed.

Adaptation, Physiological↗

Morphological and functional characteristics of isolated acini used for in vitro studies of prostatic secretion.

Acini of the rat ventral prostate were isolated by interstitial injection of a collagenase-containing medium, subsequent incubation in the same medium and repeated aspiration through pipette tips with decreasing gauge of the tip opening. Functional integrity of the isolated acini was assessed by morphological studies, including transmission and scanning electron microscopy, freeze-fracturing, and immunocytochemistry. Incubation studies with different incubation media were performed monitoring O2-consumption as a parameter of functional activity, in addition to the incorporation rate of radioactively labeled amino acids into newly synthesized proteins. Optimal incubation conditions (shaking water bath, 20 strokes/min, 37 degrees C, gassing with carbogen at 15 min intervals) were found with M 199 medium supplemented with dihydrotestosterone. Stimulation of prostatic secretion was maximal with 10(-7) M of pilocarpin, which was more effective than carbamylcholine. Incorporation of precursors into prostatic proteins proceeded for about 2 h at a linear rate. Thereafter a rapid loss of functional and morphological integrity of the isolated acini was observed including disintegration, vacuolation and lysis of individual cells. The system of isolated prostatic epithelium developed is a useful tool in the study of prostatic secretion in vitro in short term experiments.

Acid Phosphatase↗

Study of a proline-rich polypeptide bound to the prostatic binding protein of rat ventral prostate.

A proline-rich polypeptide is associated with prostatic binding protein, a major androgen-dependent protein described previously in the rat ventral prostate. This polypeptide has been purified. Its molecular weight estimated by gel filtration is about 8500, but a markedly lower value (3300) is obtained by sodium dodecyl sulfate-urea polyacrylamide gel electrophoresis. Isoelectric focusing on thin layer polyacrylamide gels yields two major forms with isoelectric points of, respectively, 7.75 and 7.05. The amino acid composition of proline-rich polypeptide is characterized by a high (19.5%) proline content and its NH2-terminal amino acid is glycine. Like prostatic binding protein, proline-rich polypeptide is a characteristic component of the rat ventral prostate and localized primarily in the intraluminal secretion of this gland. In intact adult male rats the cytosol of a whole gland contains 0.70 +/- 0.15 (S.D.) mg of the polypeptide, as measured by radial immunodiffusion or 2.6 +/- 0.5% of (S.D.) of the total protein. This amount decreases gradually after castration and becomes undetectable after 8 days. Androgen treatment, on the other hand, results in a rapid stimulation, while estradiol and progesterone are ineffective. Proline-rich polypeptide is markedly more androgen-dependent than prostatic binding protein, and promises to be an interesting end point for studies on the mechanism of action of androgens.

Amino Acids↗

Intracellular localization of Prostatic Binding Protein (PBP) in rat prostate by light and electron microscopic immunocytochemistry.

Extra- and intracellular distribution of Prostatic Binding Protein (PBP) was studied in the different genital organs of the male rat by immunocytochemistry at the light and electron microscopic levels. PBP was extracted from cytosols of rat ventral prostate and used for immunization of rabbits. The specificity of the antiserum raised was tested by "western blotting" and immunoelectrophoresis. From the different fixatives tested for optimal structural and antigenic preservation of the ventral prostate a mixture containing 2.5% paraformaldehyde, 0.5% glutaraldehyde and 0.5% CaCl2 in cacodylate buffer, 0.05 M, pH 7.3 was selected. Using the immunofluorescence technique and the unlabeled antibody enzyme method PBP-immunoreactivity was detected at the light microscopic level in the luminal secretions of the ventral prostate. No reaction was observed with the seminal vesicle, the coagulating gland, the dorsal and lateral prostates, the epididymis and the testis. Intracellular secretory granules reacting with PBP antiserum were exclusively found in the secretory cells of the ventral prostate. Insufficiently fixed cells showed a diffuse generalized reaction of the cytoplasm indicating a leakage of the antigen from the secretory granules. Such artifacts were common in tissue sections processed with the preembedding-staining procedure. At the ultrastructural level therefore mostly the postembedding staining method was performed using both the unlabeled antibody enzyme method and the ferritin-labeled immunoglobulin technique in osmicated, Epon-embedded tissue. Labeling with either method was intense in the secretory granules and the condensing vacuoles, while the labeling density of the rough endoplasmic reticulum and the Golgi cisternae was in the background range. Castration experiments showed that secretory material displaying PBP immunoreactivity was retained within the acinar lumen of the gland for several days after castration, but was absent from most secretory cells already by four days after castration. Immunocytochemistry of PBP therefore is a very sensitive method for analysing the secretory activity and its androgen dependence of the prostate of the rat.

Androgen-Binding Protein↗

Structural studies on rat prostatic binding protein. The primary structure of component C1 from subunit F.

The amino acid sequence of component C1, the polypeptide specific for subunit F of prostatic binding protein, the major secretory glycoprotein of the rat ventral prostate, has been determined. Its structure was established using the manual Edman degradation on the intact protein and on the most relevant fragments isolated from trypsin, chymotrypsin, thermolysin and Staphylococcus aureus protease digests of the 14C-labelled S-carboxamidomethylated component C1. Component C1 contains 88 amino acids corresponding to a molecular weight of 10246. It is an acidic polypeptide due to the presence of 17 acidic residues; its three cysteine residues are almost symmetrically distributed over the peptide chain. Highly polar regions are found in positions 17-27 and 37-47, while the C-terminal part of the molecule contains two hydrophobic segments.

Amino Acid Sequence↗

Incidence, growth and oestradiol-receptor levels of 7, 12-dimethylbenz (alpha) anthracene-induced mammary tumours in rats: effects of neonatal sex steroids and oestradiol implants.

The effects of neonatally administered steroids on the sensitivity of the mammary gland to tumour induction by 7, 12-dimethylbenz (alpha) anthracene was studied as a model for delayed (de) differentiating effects of steroid hormones. Immediately after birth male and female rats were gonadectomized and treated with testosterone, oestradiol or oil. Control animals were left intact. On day 45 all the gonadectomized animals and some of the control animals received an implant which delivered continuous low levels of oestradiol. The carcinogen was administered on day 55. The administration of an oestradiol implant, which increased prolactin levels in all animals, markedly reduced tumour incidence in intact female rats and increased tumour incidence in intact male rats. Neonatal administration of testosterone or oestradiol did not significantly influence tumour incidence, histopathology or oestradiol responsiveness in neonatally gonadectomized rats but tended to decrease tumour animals suggests that the effects observed by other authors in intact rats are mediated by changes in gonadal secretions. It is concluded that the hormonal environment during and after tumour induction plays a major role in the development of 7, 12-dimethylbenz (alpha) anthracene-induced mammary carcinomas.

9,10-Dimethyl-1,2-benzanthracene↗

Structural studies on rat prostatic binding protein. The primary structure of its glycosylated component C3.

The amino acid sequence of the glycosylated component C3 of rat prostatic binding protein has been determined. The peptides obtained by digestion of the S-carboxamidomethylated or S-aminoethylated glycoprotein with trypsin and Staphylococcus aureus protease were sequenced by manual Edman degradation. The alignment of the fragments was further established with overlapping peptides obtained by enzymic hydrolysis of the modified protein with chymotrypsin and thermolysin, and by chemical cleavage with cyanogen bromide. The glycopeptide C3 contains 77 amino acids corresponding to a molecular weight of 8653. the oligosaccharide chain is attached to the peptide by an N-glycosidic bond to asparagine-17. C3 is an acidic polypeptide due to the presence of ten acidic residues; its three cysteine residues are located at both extremities and in the middle of the molecule.

Amino Acid Sequence↗

Influence of the vitamin D-binding protein on the serum concentration of 1,25-dihydroxyvitamin D3. Significance of the free 1,25-dihydroxyvitamin D3 concentration.

The influence of the serum binding protein (DBP) for vitamin D and its metabolites on the concentration of its main ligands, 25-hydroxyvitamin D(3) (25-OHD(3)) and 1,25-dihydroxyvitamin D(3) (1,25-[OH](2)D(3)) was studied. The concentration of both 1,25-(OH)(2)D(3) and DBP in normal female subjects (45+/-14 ng/liter and 333+/-58 mg/liter, mean+/-SD, respectively; n = 58) increased during the intake of estro-progestogens (69+/-27 ng/liter and 488+/-90 mg/liter, respectively; n = 29), whereas the 25-OHD(3) concentration remained unchanged. A positive correlation was found between the concentrations of 1,25-(OH)(2)D(3) and DBP in these women. At the end of pregnancy, the total concentrations of 1,25-(OH)(2)D(3) (97+/-26 ng/liter, n = 40) and DBP (616+/-84 mg/liter) are both significantly higher than in nonpregnant females and paired cord serum samples (48+/-11 ng/liter and 266+/-41 mg/liter, respectively). A marked seasonal variation of 25-OHD(3) was observed in pregnant females and their infants, whereas in the same samples the concentrations of both DBP and 1,25-(OH)(2)D(3) remained constant throughout the year. The free 1,25-(OH)(2)D(3) index, calculated as the molar ratio of this steroid and DBP, remains normal in women taking estro-progestogens, however, and this might explain their normal intestinal calcium absorption despite a high total 1,25-(OH)(2)D(3) concentration. In pregnancy the free 1,25-(OH)(2)D(3) index remains normal up to 35 wk of gestation, but during the last weeks of gestation, the free 1,25-(OH)(2)D(3) index increases in both circulations. A highly significant correlation exists between the (total and free) 25-OHD(3) and 1,25-(OH)(2)D(3) concentrations in maternal and cord serum both at 35 and 40 wk of gestation.

Adult↗

Biochemical characterization of peritoneal fluid in women during the menstrual cycle.

Peritoneal fluid was collected at laparoscopy in women during the menstrual cycle and was assayed for protein and steroid hormone content. The total protein concentration in peritoneal fluid and the concentrations of the steroid hormone-binding proteins, transcortin and sex hormone-binding globulin, the polypeptide hormones, LH, FSH, and PRL, correlated with the plasma concentration but were lower; they were, respectively, 68%, 71%, 68%, 42%, and 34% of the plasma concentration. The concentrations of steroid hormones secreted by the ovary, i.e. 17 beta-estradiol, progesterone, androstenedione, and testosterone, were always equal or higher in peritoneal fluid than in plasma. In contrast, the concentrations of cortisol, a nonovarian steroid hormone, was 40% lower in peritoneal fluid than in plasma. No cyclic variations were observed in the peritoneal fluid concentrations of androstenedione and testosterone, two steroid hormones secreted by the stromal component of the ovary. On the contrary, the concentrations of 17 beta-estradiol and progesterone secreted by the follicular apparatus of the ovary increased sharply in peritoneal fluid after ovulation, reaching values of 44000 pg/ml and 3000 ng/ml, respectively. They declined progressively, whereas in plasma, peak concentrations were achieved only in the midluteal phase. In conclusion, the concentrations of 17 beta-estradiol and progesterone are much higher in peritoneal fluid than in plasma for at least 1 week after ovulation. We suggest that the secretion of the early, not yet vascularized, corpus luteum is directed preferentially toward the peritoneal cavity, creating a specific hormonal environment for the released oocyte and the oviduct.

Ascitic Fluid↗