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E Mulder

Publications and source records attributed to E Mulder.

At least 109 records · Page 6Linked to original sources

Testicular estradiol receptors in the rat.

Specific high affinity saturable binding proteins for oestradiol-17beta have been demonstrated in the cytoplasm of liver, adrenal, pituitary, prostate, epididymis and testis interstitial tissue of the rat. Specific testicular oestradiol receptors were present in cytoplasmic and nuclear fractions of interstitial tissue, but not in seminiferous tubules of rat testis. After in vivo or in vitro administration of estradiol the steroid was bound by the nuclear fraction of interstitial tissue only in the presence of the cytoplasmic receptor. Using agar gel electrophoresis the cytoplasmic oestradiol receptor from rat testis could be separated from the testicular androgen binding protein (ABP) and from a specific androgen receptor.

Animals↗

High-affinity binding of oestradiol-17beta by cytosols from testis interstitial tissue, pituitary, adrenal, liver and accessory sex glands of the male rat.

The specificity of the binding of oestradiol-17beta by cytoplasmic fractions of several tissues of the male rat was investigated. 1. Agar-gel electrophoresis, Sephadex chromatography, adsorption by dextran-coated charcoal and sucrose-gradient centrifugation were used to estimate the binding capacity and specificity. The four different methods all gave similar results for the capacity of the specific oestradiol-17beta-binding macromolecules in the testis. 2. The presence of a specific saturable binding protein with a sedimentation coefficient of 8S was demonstrated in liver, adrenal, pituitary, prostate, epididymis and testis interstitial tissue. The highest concentration of oestradiol-17beta-binding macromolecules was found in testis interstitial tissue (0.12pmol/mg of protein) and in the pituitary (0.075pmol/mg of protein). 3. The oestradiol-17beta receptor in the testis cytosol showed the characteristics of a protein with respect to Pronase treatment and temperature sensitivity. In competition experiments with different steroids the receptor showed a high affinity for oestradiol-17beta, a moderate affinity for diethylstilboestrol and oestradiol-17alpha and a low affinity for oestrone, oestriol, testosterone and 5alpha-dihydrotestosterone (17beta-hydroxy-5alpha-androstan-3-one). 4. The wide distribution of oestradiol-17beta receptors in the male rat is in apparent contradiction to the current concept of the specificity of steroid-hormone action. Further research is required to investigate a possible physiological meaning of the presence of specific receptors in the different tissues.

Adrenal Glands↗

Isolation and characterization of 17 -hydroxy steroid dehydrogenase from human erythrocytes.

1. The 17beta-hydroxy steroid dehydrogenase was solubilized during haemolysis of erythrocytes and was isolated from the membrane-free haemolysate. Membrane preparations isolated in different ways did not contain 17beta-hydroxy steroid dehydrogenase activity. The 17beta-hydroxy steroid dehydrogenase activity in the haemolysate was concentrated by repeated ammonium sulphate precipitation and gel filtration on Sephadex G-150. The 17beta-hydroxy steroid dehydrogenase activity of the purified preparation per unit weight of protein was 350-3000 times higher than the activity of the crude erythrocyte haemolysate. The 20alpha-hydroxy steroid dehydrogenase activity was lost during this purification procedure. 2. The 17beta-hydroxy steroid dehydrogenase was NADP-dependent and had a pH optimum for conversion of testosterone between 8.5 and 10. For the molecular weight of the enzyme a value of 64000 was calculated from Sephadex chromatography results. 3. p-Chloromercuribenzoate inhibited the enzymic activity. The oxidative activity of the enzyme for the 17beta-hydroxyl group was only partly inhibited when a large excess of 17-oxo steroids was added. The catalysing activity of the enzyme was influenced by the NADP(+)/NADPH ratio. The oxidation of the 17beta-hydroxyl group in the presence of NADP(+) proceeded faster than the reduction of the 17-oxo group with NADPH. When both reduced and oxidized cofactors were present the oxidation of the 17beta-hydroxyl group was inhibited to a considerable extent. 4. The enzyme had a broad substrate specificity and not only catalysed the conversion of androstanes with a 17beta-hydroxyl group, or 17-oxo group, but also the conversion oestradiolleft arrow over right arrowoestrone. In addition the steroid conjugates dehydroepiandrosterone sulphate and oestrone sulphate were also converted. There were no indications that more than one 17beta-hydroxy steroid dehydrogenase was present in the partially purified preparation.

Ammonium Sulfate↗