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Biomedical subjects

R E Kramer

Publications and source records attributed to R E Kramer.

At least 55 records · Page 3Linked to original sources

Interaction of prostaglandins with adrenal microsomal cytochrome P-450 in the guinea pig.

Studies were carried out to investigate the effects of prostaglandins (PG) in vitro on adrenal microsomal steroid and drug metabolism in the guinea pig. The addition of PGE1, PGE2, PGA1, PGF1 alpha or PGF2 alpha to isolated adrenal microsomes produced typical type I difference spectra. The sizes of the spectra (delta A385-420) produced by prostaglandins were smaller than those produced by various steroids including progesterone, 17-hydroxyprogesterone and 11 beta-hydroxyprogesterone. However, the affinities of prostaglandins and steroids for adrenal microsomal cytochrome P-450, as estimated by the spectral dissociation constants, were similar. Prior addition of prostaglandins to isolated adrenal microsomes did not affect steroid binding to cytochrome P-450 or the rate of steroid 21-hydroxylation. In contrast, prostaglandins inhibited adrenal metabolism of ethylmorphine and diminished the magnitude of the ethylmorphine-induced spectral change in adrenal microsomes. The results indicate that prostaglandins inhibit adrenal drug metabolism by interfering with substrate binding to cytochrome P-450. Since 21-hydroxylation was unaffected by PG, different cytochrome P-450 moieties are probably involved in adrenal drug and steroid metabolism.

Adrenal Glands↗

The cholesterol side chain cleavage system of the rat adrenal cortex and its relationship to the circadian rhythm.

The adrenal mitochondrial cytochrome P450 systems were examined at the low and high points of the circadian rhythm in female rats maintained on a light cycle from 0600--1800 h. The rate of association of cholesterol with the cholesterol side chain cleavage form of cytochorme P450 (P450scc) was measured by light absorption spectrometry. Cholesterol binding to P450scc was as high in rats killed at the beginning of the dark period as it was in stressed rats at the beginning of the light period. Stressing rats at the beginning of the dark period did not result in a further increase in the rate of cholesterol association with P450scc despite a further increase in serum corticosterone levels. This suggests that other reactions of cholesterol metabolism in the adrenal cortex are contributing in a significant way to the increased rate of corticosteroidogenesis seen in the stressed animals.

Adrenal Cortex↗

Requirement of the pituitary gland for gonadal hormone effects on hepatic drug metabolism in rats.

Previous studies have demonstrated an important role for the pituitary gland in the regulation of hepatic drug and steroid metabolism. The present studies were carried out to determine the relationship between the pituitary gland and the actions of gonadal hormones on hepatic drug metabolism in rats. Testosterone administration to castrated male rats increased hepatic microsomal cytochrome P-450 concentrations and enhanced the rates of ethylmorphine demethylation and benzo(a)pyrene hydroxylation. Estradiol treatment, on the other hand, lowered cytochrome P-450 levels and decreased the rates of aniline, ethylmorphine and benzo(a)pyrene metabolism in orchiectomized rats. However, when given to hypophysectomized male rats, neither testosterone nor estradiol affected cytochrome P-450 levels or enzyme activities. Similarly, 5alpha-dihydrotestosterone administration increased hepatic drug metabolism only in the presence of the pituitary gland. The effects of both testosterone and estradiol were fully demonstrable in the absence of the thyroid or adrenal glands, excluding the need for either organ. The results indicate an absolute dependence on the pituitary gland for gonadal hormone (testosterone and estradiol) actions on hepatic mixed-function oxidases.

Adrenalectomy↗

Site of action of growth hormone on adrenocortical steroidogenesis in rats.

Studies were carried out to define the mechanism of action of growth hormone on adrenocortical steroidogenesis in hypophysectomized female rats. ACTH administration for 7 days increased corticosterone secretion in vivo and corticosterone production by adrenal tissue in vitro. Adrenal mitochondrial and microsomal cytochrome P-450 concentrations as well as the activities of cytochrome P-450-dependent enzymes (cholesterol sidechain cleavage, 11beta-hydroxylase, 21-hydroxylase) were also increased by ACTH. Administration of bovine growth hormone alone to hypophysectomized rats had no effect on any of the parameters evaluated. However, when given in combination with ACTH, growth hormone synergistically enhanced the effects of ACTH on cholesterol sidechain cleavage activity and corticosterone secretion. The magnitude of the pregnenolone-induced difference spectrum in adrenal mitochondria, indicative of cholesterol binding to cytochrome P-450, was also increased by growth hormone, but neither cytochrome P-450 content nor the activities of other steroidogenic enzymes were affected. The results indicate that growth hormone interacts with ACTH to promote corticosterone secretion by increasing the association of cholesterol with adrenal mitochondrial cytochrome P-450, thereby increasing the activity of cholesterol sidechain cleavage, the rate-limiting step in steroidogenesis.

Adrenal Cortex↗