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RAG1和RAG2:参与糖代谢生长过程中线粒体呼吸功能依赖性/非依赖性的核基因。

RAG1 and RAG2: nuclear genes involved in the dependence/independence on mitochondrial respiratory function for growth on sugars.

作者信息

Goffrini P, Algeri A A, Donnini C, Wesolowski-Louvel M, Ferrero I

机构信息

Institute of Genetics, University of Parma, Italy.

出版信息

Yeast. 1989 Mar-Apr;5(2):99-106. doi: 10.1002/yea.320050205.

Abstract

The analysis of five independent isolates of Kluyveromyces lactis shows that CBS 2359, CBS 683 and CBS 4574 could grow in the presence of mitochondrial inhibitors (antimycin A, oligomycin or erythromycin) and that CBS 2360 and CBS 141 were unable to grow in the presence of drugs. The resistant growth was observed only on glucose and not on other fermentable carbon sources (galactose, lactose). The phenotype 'growth on glucose in the presence of mitochondrial inhibitors' was called Rag+. This phenotype was found to be controlled by two unlinked nuclear genes: RAG1 and RAG2. Either of their recessive alleles, rag1 and rag2, led to the Rag- phenotype (i.e. the failure of growth on glucose in the presence of antimitochondrial drugs). Rag- strains represent the case in which fermentative growth becomes absolutely dependent on the functioning of the normal respiratory chain.

摘要

对乳酸克鲁维酵母的五个独立分离株的分析表明,CBS 2359、CBS 683和CBS 4574能够在线粒体抑制剂(抗霉素A、寡霉素或红霉素)存在的情况下生长,而CBS 2360和CBS 141在药物存在时无法生长。抗性生长仅在葡萄糖上观察到,而在其他可发酵碳源(半乳糖、乳糖)上未观察到。“在线粒体抑制剂存在下在葡萄糖上生长”的表型被称为Rag+。发现该表型由两个不连锁的核基因RAG1和RAG2控制。它们的隐性等位基因rag1和rag2中的任何一个都会导致Rag-表型(即在抗线粒体药物存在下在葡萄糖上无法生长)。Rag-菌株代表发酵生长绝对依赖于正常呼吸链功能的情况。

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