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对D-葡萄糖胺作为卡尔斯伯酵母无偿分解代谢阻遏物的评估。

An evaluation of D-glucosamine as a gratuitous catabolite repressor of Saccharomyces carlsbergensis.

作者信息

Furst A, Michels C A

出版信息

Mol Gen Genet. 1977 Oct 24;155(3):309-14. doi: 10.1007/BF00272810.

Abstract

Glucose represses mitochondrial biogenesis and the fermentation of maltose, galactose and sucrose in yeast. We have analyzed the effect of D-glucosamine on these functions in order to determine if it can produce a similar repression. It was found that glucosamine represses the respiration rate (QO2) but more rapidly than glucose and to a final level slightly higher than in glucose-treated cells. Derepression of the respiration rate following either glucose or glucosamine repression was similar. A two hour lag was followed by a linear increase in QO2 to the derepressed level. Both glucose and glucosamine repressed the level of cytochrome oxidase to the same level. Glucosamine was also found to repress maltose and galactose fermentation but not sucrose fermentation. The derepression of maltase synthesis was inhibited by glucosamine. The constitutive synthesis of maltase was repressed by the addition of glucosamine. Glucosamine was judged to produce a repressed state similar to glucose repression in many respects.

摘要

葡萄糖可抑制酵母中线粒体的生物合成以及麦芽糖、半乳糖和蔗糖的发酵。我们分析了D - 葡糖胺对这些功能的影响,以确定它是否能产生类似的抑制作用。结果发现,葡糖胺可抑制呼吸速率(QO2),但其抑制速度比葡萄糖更快,最终水平略高于用葡萄糖处理的细胞。葡萄糖或葡糖胺抑制后呼吸速率的去抑制作用相似。先是有两小时的延迟,随后QO2呈线性增加至去抑制水平。葡萄糖和葡糖胺均将细胞色素氧化酶水平抑制至相同程度。还发现葡糖胺可抑制麦芽糖和半乳糖发酵,但不抑制蔗糖发酵。葡糖胺可抑制麦芽糖酶合成的去抑制作用。添加葡糖胺可抑制麦芽糖酶的组成型合成。在许多方面,葡糖胺被判定会产生与葡萄糖抑制相似的抑制状态。

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