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Mutants of Saccharomyces Cerevisiae with Defects in Acetate Metabolism: Isolation and Characterization of Acn(-) Mutants

机译:酿酒酵母与乙酸代谢缺陷的突变体:Acn(-)突变体的分离和表征。

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摘要

The two carbon compounds, ethanol and acetate, can be oxidatively metabolized as well as assimilated into carbohydrate in the yeast Saccharomyces cerevisiae. The distribution of acetate metabolic enzymes among several cellular compartments, mitochondria, peroxisomes, and cytoplasm makes it an intriguing system to study complex metabolic interactions. To investigate the complex process of carbon catabolism and assimilation, mutants unable to grow on acetate were isolated. One hundred five Acn(-) (``ACetate Nonutilizing'') mutants were sorted into 21 complementation groups with an additional 20 single mutants. Five of the groups have defects in TCA cycle enzymes: MDH1, CIT1, ACO1, IDH1, and IDH2. A defect in RTG2, involved in the retrograde communication between the mitochondrion and the nucleus, was also identified. Four genes encode enzymes of the glyoxylate cycle and gluconeogenesis: ICL1, MLS1, MDH2, and PCK1. Five other genes appear to be defective in regulating metabolic activity since elevated levels of enzymes in several metabolic pathways, including the glyoxylate cycle, gluconeogenesis, and acetyl-CoA metabolism, were detected in these mutants: ACN8, ACN9, ACN17, ACN18, and ACN42. In summary, this analysis has identified at least 22 and as many as 41 different genes involved in acetate metabolism.
机译:乙醇和乙酸盐这两种碳化合物可以被氧化代谢,也可以被同化为酿酒酵母中的碳水化合物。乙酸代谢酶在几个细胞区室,线粒体,过氧化物酶体和细胞质中的分布使其成为研究复杂的代谢相互作用的有趣系统。为了研究碳分解代谢和同化的复杂过程,分离了无法在乙酸盐上生长的突变体。将155个Acn(-)(``未使用乙酸盐'')突变体分为21个互补组,另外还有20个单个突变体。其中五组在TCA循环酶中具有缺陷:MDH1,CIT1,ACO1,IDH1和IDH2。还确定了RTG2的一个缺陷,该缺陷与线粒体和细胞核之间的逆行通信有关。四个基因编码乙醛酸循环和糖异生的酶:ICL1,MLS1,MDH2和PCK1。其他五个基因似乎在调节代谢活性方面存在缺陷,因为在这些突变体中检测到了几种代谢途径中的酶水平升高,包括乙醛酸循环,糖异生和乙酰辅酶A代谢:ACN8,ACN9,ACN17,ACN18和ACN42 。总而言之,该分析已鉴定出至少22个和多达41个与乙酸酯代谢有关的不同基因。

著录项

  • 期刊名称 Genetics
  • 作者

    M. T. McCammon;

  • 作者单位
  • 年(卷),期 1996(144),1
  • 年度 1996
  • 页码 57–69
  • 总页数 13
  • 原文格式 PDF
  • 正文语种
  • 中图分类 遗传学;
  • 关键词

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