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18-羟基化甾体对人醛固酮合酶和11β-羟化酶产生皮质类固醇的影响。

Effects of 18-hydroxylated steroids on corticosteroid production by human aldosterone synthase and 11beta-hydroxylase.

作者信息

Fisher A, Friel E C, Bernhardt R, Gomez-Sanchez C, Connell J M, Fraser R, Davies E

机构信息

Medical Research Council Blood Pressure Group, Department of Medicine and Therapeutics, Western Infirmary, Glasgow, Scotland G11 6NT.

出版信息

J Clin Endocrinol Metab. 2001 Sep;86(9):4326-9. doi: 10.1210/jcem.86.9.7797.

Abstract

In glucocorticoid-suppressible hyperaldosteronism, 11beta- hydroxylase activity is impaired. A chimeric enzyme formed from the control elements of 11beta-hydroxylase and the structural elements of aldosterone synthase is expressed ectopically in the zona fasciculata, thus exposing cortisol to aldosterone synthase. Increased quantities of 18-hydroxycortisol and 18-oxocortisol are synthesized, which, it has been suggested, might have a local inhibitory effect on the normal 11beta-hydroxylase. The effects of these compounds and also of 18-hydroxydeoxycorticosterone were tested in cells stably transfected with CYP11B1 and CYP11B2, the genes encoding 11beta-hydroxylase and aldosterone synthase, respectively. Neither 18-hydroxycortisol nor 18-oxocortisol affected the efficiency of use of 11-deoxycorticosterone or 11-deoxycortisol as substrates by the enzymes. 18-Hydroxydeoxycorticosterone significantly reduced the conversion rate of 11-deoxycorticosterone to corticosterone and that of 11-deoxycortisol to cortisol by both enzymes, but the production rate of 18- hydroxycorticosterone and aldosterone by aldosterone synthase increased. Aldosterone synthase was able to convert 18-hydroxydeoxycorticosterone to 18-hydroxycorticosterone and aldosterone, although its affinity for this substrate was lower (4.76 micromol/liter) than that for 11-deoxycorticosterone (0.11 micromol/liter). 11beta-Hydroxylase was unable to convert 18- hydroxydeoxycorticosterone to 18-hydroxycorticosterone. 18-Hydroxycortisol and 18-oxocortisol are not, therefore, the cause of lower 11beta-hydroxylase activity in glucocorticoid- suppressible hyperaldosteronism. 18-Hydroxydeoxycorticosterone can be converted to aldosterone, but its local concentration in man and its K(m) suggest that it is unlikely to be important.

摘要

在糖皮质激素可抑制性醛固酮增多症中,11β - 羟化酶活性受损。一种由11β - 羟化酶的调控元件和醛固酮合酶的结构元件形成的嵌合酶在束状带异位表达,从而使皮质醇暴露于醛固酮合酶作用下。合成了数量增加的18 - 羟皮质醇和18 - 氧皮质醇,有人认为它们可能对正常的11β - 羟化酶有局部抑制作用。分别用编码11β - 羟化酶的CYP11B1基因和醛固酮合酶的CYP11B2基因稳定转染的细胞,测试了这些化合物以及18 - 羟脱氧皮质酮的作用。18 - 羟皮质醇和18 - 氧皮质醇均未影响这两种酶将11 - 脱氧皮质酮或11 - 脱氧皮质醇作为底物的利用效率。18 - 羟脱氧皮质酮显著降低了这两种酶将11 - 脱氧皮质酮转化为皮质酮以及将11 - 脱氧皮质醇转化为皮质醇的转化率,但醛固酮合酶生成18 - 羟皮质醇和醛固酮的速率增加。醛固酮合酶能够将18 - 羟脱氧皮质酮转化为18 - 羟皮质醇和醛固酮,尽管其对该底物的亲和力(4.76微摩尔/升)低于对11 - 脱氧皮质酮的亲和力(0.11微摩尔/升)。11β - 羟化酶无法将18 - 羟脱氧皮质酮转化为18 - 羟皮质醇。因此,18 - 羟皮质醇和18 - 氧皮质醇并非糖皮质激素可抑制性醛固酮增多症中11β - 羟化酶活性降低的原因。18 - 羟脱氧皮质酮可转化为醛固酮,但其在人体中的局部浓度及其米氏常数表明它不太可能起重要作用。

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