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葡萄糖诱导乳酸克鲁维酵母对琥珀酸代谢产生隐蔽性

Glucose-induced crypticity toward succinate metabolism in Saccharomyces lactis.

作者信息

MacQuillan A M

出版信息

J Bacteriol. 1969 Oct;100(1):288-94. doi: 10.1128/jb.100.1.288-294.1969.

Abstract

Saccharomyces lactis grown on glucose adapted very slowly to growth on succinate. This initial inability of glucose-grown cells to grow on succinate was paralleled by their inability to oxidize succinate. The possibility that repression by glucose of respiratory chain components was responsible for these observations was examined. Glucose-grown cells were able to respire glucose, ethyl alcohol, and lactate and were able to initiate growth on ethyl alcohol as rapidly as succinate-grown cells. Respiratory enzyme levels were essentially the same in cells grown on succinate or on glucose. Spectroscopic analysis revealed that glucose-grown cells possessed a full complement of cytochrome bands. Since by these criteria glucose-grown S. lactis appears to possess a competent respiratory system, the penetration of succinate-2,3-(14)C into succinate- and glucose-grown cells was examined directly. Glucose-grown cells exhibited a strong permeability barrier to succinate. Comparison of glucose oxidation by S. lactis and by S. cerevisiae suggests that the crypticity to succinate does not depend upon a strong Crabtree effect in S. lactis.

摘要

在葡萄糖上生长的乳酸酵母适应在琥珀酸盐上生长的速度非常缓慢。葡萄糖培养的细胞最初无法在琥珀酸盐上生长,同时也无法氧化琥珀酸盐。研究了葡萄糖对呼吸链成分的抑制作用是否是导致这些现象的原因。葡萄糖培养的细胞能够呼吸葡萄糖、乙醇和乳酸,并且能够像琥珀酸盐培养的细胞一样迅速开始在乙醇上生长。在琥珀酸盐或葡萄糖上生长的细胞中,呼吸酶水平基本相同。光谱分析表明,葡萄糖培养的细胞拥有完整的细胞色素带。根据这些标准,葡萄糖培养的乳酸酵母似乎拥有一个有功能的呼吸系统,因此直接检测了琥珀酸 -2,3-(14)C 进入琥珀酸盐培养和葡萄糖培养细胞的情况。葡萄糖培养的细胞对琥珀酸盐表现出很强的渗透屏障。乳酸酵母和酿酒酵母对葡萄糖氧化的比较表明,对琥珀酸盐的隐匿性并不取决于乳酸酵母中强烈的巴斯德效应。

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