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酿酒酵母菌株GL7促进的新型甾醇转化:9β,19-环丙基向9(11)-异构化以及14-去甲基化生成8(14)-甾醇的证据。

Novel sterol transformations promoted by Saccharomyces cerevisiae strain GL7: evidence for 9 beta, 19-cyclopropyl to 9(11)-isomerization and for 14-demethylation to 8(14)-sterols.

作者信息

Venkatramesh M, Nes W D

机构信息

Department of Chemistry and Biochemistry, Texas Tech University, Lubbock 79409, USA.

出版信息

Arch Biochem Biophys. 1995 Dec 1;324(1):189-99. doi: 10.1006/abbi.1995.9912.

Abstract

Cultures of Saccharomyces cerevisiae strain GL7 (a sterol auxotroph) were incubated with nonradioactive and tritium-labeled cycloartenol, and the sterol composition of the cells was examined by chemical (GLC, TLC, HPLC, MS, 1H-NMR, and 13C-NMR) and radiotracer techniques. Several novel sterols were isolated from the cells including 14 alpha-methyl ergosta-9(11),24(28)-dien-3 beta-ol, 24 beta-methyl-9 beta,19-cyclopropyl ergost-8(14)-en-3 beta-ol, and 9 beta,19-cyclopropyl ergosta-7(8),24(28)-dien-3 beta-ol. GL7 converted [2-3H]cycloartenol to [2-3H]ergosterol in low yield (1% incorporation), whereas [2-3H]lanosterol was converted to [2-3H]ergosterol in high yield (41% incorporation). The degree of sterol absorption and transformation by GL7 was dependent on the type and amount of sterol(s) in the growth medium. The results demonstrate for the first time that yeast may transform 9 beta,19-cyclopropyl sterols to 9(11)-sterols and delta 5-sterols and that 14-demethylation of sterols may proceed in GL7 to double bond formation either in the 8(14)-position or in the 14(15)-position.

摘要

将酿酒酵母菌株GL7(一种甾醇营养缺陷型菌株)的培养物与非放射性和氚标记的环阿屯醇一起孵育,然后通过化学(气相色谱法、薄层色谱法、高效液相色谱法、质谱法、¹H-核磁共振法和¹³C-核磁共振法)和放射性示踪技术检测细胞的甾醇组成。从细胞中分离出了几种新型甾醇,包括14α-甲基麦角甾-9(11),24(28)-二烯-3β-醇、24β-甲基-9β,19-环丙基麦角甾-8(14)-烯-3β-醇和9β,19-环丙基麦角甾-7(8),24(28)-二烯-3β-醇。GL7将[2-³H]环阿屯醇转化为[2-³H]麦角甾醇的产率较低(掺入率为1%),而[2-³H]羊毛甾醇转化为[2-³H]麦角甾醇的产率较高(掺入率为41%)。GL7对甾醇的吸收和转化程度取决于生长培养基中甾醇的类型和数量。结果首次证明酵母可能将9β,19-环丙基甾醇转化为9(11)-甾醇和δ⁵-甾醇,并且甾醇的14-去甲基化在GL7中可能会导致在8(14)-位或14(15)-位形成双键。

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