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酵母无细胞体系中麦角固醇的生物合成

Biosynthesis of ergosterol in cell-free system of yeast.

作者信息

Nishino T, Hata S, Osumi T, Katsuki H

出版信息

J Biochem. 1980 Jul;88(1):247-54.

PMID:6997284
Abstract

We previously proposed the occurrence of multiple pathways in the ergosterol biosynthesis of yeast, based on the results of examination of 14C-incorporation into sterols from L-[methyl-14C]methionine which was given to the intact cells of yeast. This led us to investigate the validity of the pathways by experiments with the cell-free system. Highly active cell-free extracts could be prepared by disruption of yeast cells with a Vibrogen Cell Mill in the presence of 0.1 mM dithiothreitol. This preparation catalyzed 14C-incorporation from [14C]methionine into ergosterol with a high yield. This preparation was found to be favorable for elucidation of ergosterol synthesis, since only a small amount of radioactivity was incorporated into fatty acid ester form of sterols which were reported to be inactive as a substrate for sterol synthesis reaction. Time course experiment of 14C-incorporation from [14C]methionine into various sterols under aerobic conditions showed that ergosta-8,24(28)-dien-3 beta-ol was a precursor for ergosta-7,24(28)-dien-3 beta-ol and that radioactivities were converted through ergosta-5,7,24(28)-trien-3 beta-ol and ergosta-5,7,22,24(28)-tetraen-3 beta-ol into ergosterol with time. In contrast, similar experiments under anaerobic conditions showed that ergosta-7,24(28)-dien-3 beta-ol accumulated and very little conversion of radioactivity into ergosterol occurred. In addition, the results indicated that oxygen was required for the introduction of double bond into 22 position as well as into 5 position. The results obtained with the cell-free system supported the validity of the proposal of multiple pathways of ergosterol synthesis in the intact cells.

摘要

我们之前基于对给予酵母完整细胞的L-[甲基-14C]甲硫氨酸中14C掺入甾醇的检测结果,提出酵母麦角甾醇生物合成中存在多条途径。这促使我们通过无细胞系统实验来研究这些途径的有效性。在0.1 mM二硫苏糖醇存在下,用振动细胞研磨机破碎酵母细胞可制备出高活性的无细胞提取物。该制剂能高效催化[14C]甲硫氨酸中的14C掺入麦角甾醇。发现该制剂有利于阐明麦角甾醇的合成,因为只有少量放射性掺入甾醇的脂肪酸酯形式,据报道这种形式作为甾醇合成反应的底物是无活性的。在有氧条件下,[14C]甲硫氨酸中14C掺入各种甾醇的时间进程实验表明,麦角甾-8,24(28)-二烯-3β-醇是麦角甾-7,24(28)-二烯-3β-醇的前体,并且随着时间的推移,放射性通过麦角甾-5,7,24(28)-三烯-3β-醇和麦角甾-5,7,22,24(28)-四烯-3β-醇转化为麦角甾醇。相反,在厌氧条件下的类似实验表明,麦角甾-7,24(28)-二烯-3β-醇积累,并且很少有放射性转化为麦角甾醇。此外,结果表明在22位以及5位引入双键都需要氧气。无细胞系统获得的结果支持了完整细胞中麦角甾醇合成多条途径这一提议的有效性。

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