Casey W M, Burgess J P, Parks L W
Department of Microbiology, North Carolina State University, Raleigh 27695-7615.
Biochim Biophys Acta. 1991 Feb 5;1081(3):279-84. doi: 10.1016/0005-2760(91)90283-n.
We measured the incorporation of radiolabeled methionine and acetate into the sterol component of G204, a Saccharomyces cerevisiae mutant strain which is partially heme competent. By comparing the amount of label incorporated into the sterol pool of a control culture, to which no exogenous sterol was added, with a culture which had various sterols added to the growth medium, we were able to determine the specific structural features of ergosterol which facilitate its ability to restrict the sterol biosynthetic pathway. These experiments demonstrate that sterols which contain both a C22 unsaturation and a C24 methyl group are capable of reducing sterol biosynthesis by approx. 50%, regardless of B-ring structure. We examined the regulatory properties of various oxysterols; 24,25-epoxylanosterol reduced endogenous biosynthesis by 49%, whereas all cholesterol derivatives tested, including 25-hydroxycholesterol, had little effect. A new procedure for the synthesis of ergosterol peroxides is also described.
我们测定了放射性标记的甲硫氨酸和乙酸盐掺入G204(一种部分具备血红素能力的酿酒酵母突变菌株)的甾醇成分中的情况。通过比较未添加外源甾醇的对照培养物的甾醇库中掺入的标记量与在生长培养基中添加了各种甾醇的培养物的甾醇库中掺入的标记量,我们能够确定麦角固醇促进其限制甾醇生物合成途径能力的特定结构特征。这些实验表明,同时含有C22不饱和键和C24甲基的甾醇能够将甾醇生物合成减少约50%,而与B环结构无关。我们研究了各种氧化甾醇的调节特性;24,25-环氧羊毛甾醇使内源性生物合成减少了49%,而所有测试的胆固醇衍生物,包括25-羟基胆固醇,几乎没有影响。还描述了一种合成麦角固醇过氧化物的新方法。