Lauber M, Sugano S, Ohnishi T, Okamoto M, Müller J
J Steroid Biochem. 1987 Jun;26(6):693-8. doi: 10.1016/0022-4731(87)91041-7.
Whereas cytochrome P-45011 beta has been recently shown to catalyze the two-step conversion of corticosterone to aldosterone in the bovine and porcine adrenal cortex, the identity of the enzyme involved in the two final steps of aldosterone biosynthesis in the rat adrenal cortex is as yet unknown. Mitochondria from capsular adrenals of sodium-deficient, potassium-replete rats converted corticosterone to 18-hydroxycorticosterone and aldosterone at markedly higher rates than mitochondria from capsular adrenals of sodium-replete, potassium-deficient rats. However, the same preparations exhibited no difference in the 11 beta-hydroxylase activity, i.e. the conversion of deoxycorticosterone to corticosterone. Only mitochondria of zona glomerulosa from rats with stimulated aldosterone biosynthesis contained a 49K protein which showed a strong cross-reactivity with a monoclonal antibody raised against purified bovine cytochrome P-45011 beta. By contrast, a crossreactive protein with a molecular weight of 51K was found in mitochondria of zona fasciculata and in mitochondria of zona glomerulosa from rats with a suppressed aldosterone biosynthesis. These findings indicate the existence of two different forms of cytochrome P-45011 beta in the rat adrenal cortex, with only one of them, i.e. the 49K form, being capable of catalyzing the two final steps of aldosterone biosynthesis in situ.
尽管最近已证明细胞色素P-45011β可催化牛和猪肾上腺皮质中皮质酮向醛固酮的两步转化,但大鼠肾上腺皮质中醛固酮生物合成最后两步所涉及的酶的身份尚不清楚。钠缺乏、钾充足的大鼠被膜肾上腺的线粒体将皮质酮转化为18-羟皮质酮和醛固酮的速率明显高于钠充足、钾缺乏的大鼠被膜肾上腺的线粒体。然而,相同的制剂在11β-羟化酶活性方面没有差异,即脱氧皮质酮向皮质酮的转化。只有醛固酮生物合成受刺激的大鼠的球状带线粒体含有一种49K蛋白,该蛋白与针对纯化的牛细胞色素P-45011β产生的单克隆抗体具有强烈的交叉反应性。相比之下,在束状带线粒体和醛固酮生物合成受抑制的大鼠的球状带线粒体中发现了一种分子量为51K的交叉反应蛋白。这些发现表明大鼠肾上腺皮质中存在两种不同形式的细胞色素P-45011β,其中只有一种,即49K形式,能够原位催化醛固酮生物合成的最后两步。