Marusic E T, Mulrow P J
J Clin Invest. 1967 Dec;46(12):2101-8. doi: 10.1172/JCI105697.
The effect of various factors on the conversion of corticosterone to aldosterone was studied in an isolated mitochondrial system from rat adrenal glands. The adrenal mitochondrial fraction from rats on a low sodium diet has a greater capacity for converting corticosterone to aldosterone than mitochondria from rats fed a normal diet. After 1 day on a low sodium diet the amount converted was 162% and after the 2nd and 4th day the amounts converted were 239 and 242%, respectively, compared to a value of 100% for the control rats. Sodium and(or) potassium added in vitro did not affect the conversion of corticosterone to aldosterone. The specificity of the sodium depletion stimulus on the conversion of corticosterone to aldosterone was established by comparing two other mitochondrial enzymes from glomerulosa cell mitochondria. Succinic dehydrogenase and 11 beta-hydroxylase were measured in normal and sodium-depleted rats and no difference in activity of either enzyme was found. The data are consistent with the view that sodium depletion stimulates the last step in aldosterone biosynthesis by causing a specific enzymatic change in adrenal mitochondria.
在一个分离的大鼠肾上腺线粒体系统中,研究了各种因素对皮质酮转化为醛固酮的影响。低钠饮食大鼠的肾上腺线粒体部分比正常饮食大鼠的线粒体将皮质酮转化为醛固酮的能力更强。低钠饮食1天后,转化量为162%,第2天和第4天后,转化量分别为239%和242%,而对照大鼠的值为100%。体外添加钠和(或)钾不影响皮质酮向醛固酮的转化。通过比较来自球状带细胞线粒体的另外两种线粒体酶,确定了钠缺乏刺激对皮质酮转化为醛固酮的特异性。在正常和缺钠大鼠中测量了琥珀酸脱氢酶和11β-羟化酶,未发现这两种酶的活性有差异。这些数据与以下观点一致,即钠缺乏通过引起肾上腺线粒体的特定酶变化来刺激醛固酮生物合成的最后一步。