首页> 美国卫生研究院文献>The EMBO Journal >An enzyme in yeast mitochondria that catalyzes a step in branched-chain amino acid biosynthesis also functions in mitochondrial DNA stability.
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An enzyme in yeast mitochondria that catalyzes a step in branched-chain amino acid biosynthesis also functions in mitochondrial DNA stability.

机译:酵母线粒体中的一种酶它催化分支链氨基酸生物合成中的一个步骤也可以促进线粒体DNA的稳定性。

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摘要

The yeast mitochondrial high mobility group protein Abf2p is required, under certain growth conditions, for the maintenance of wild-type (rho+) mitochondrial DNA (mtDNA). We have identified a multicopy suppressor of the mtDNA instability phenotype of cells with a null allele of the ABF2 gene (delta abf2). The suppressor is a known gene, ILV5, encoding the mitochondrial protein, acetohydroxy acid reductoisomerase, which catalyzes a step in branched-chain amino acid biosynthesis. Efficient suppression occurs with just a 2- to 3-fold increase in ILV5 copy number. Moreover, in delta abf2 cells with a single copy of ILV5, changes in mtDNA stability correlate directly with changes in conditions that are known to affect ILV5 expression. Wild-type mtDNA is unstable in cells with an ILV5 null mutation (delta ilv5), leading to the production of mostly rho- petite mutants. The instability of rho+ mtDNA in delta ilv5 cells is not simply a consequence of a block in branched-chain amino acid biosynthesis, since mtDNA is stable in cells with a null allele of the ILV2 gene, which encodes another enzyme of that pathway. The most severe instability of rho+ mtDNA is observed in cells with null alleles of both ABF2 and ILV5. We suggest that ILV5 encodes a bifunctional protein required for branched-chain amino acid biosynthesis and for the maintenance of rho+ mtDNA.
机译:在某些生长条件下,需要酵母线粒体高迁移率族蛋白Abf2p来维持野生型(rho +)线粒体DNA(mtDNA)。我们已经鉴定出了带有mtb不稳定性表型的ABF2基因无效等位基因(δabf2)细胞的多拷贝抑制剂。抑制子是一个已知的基因ILV5,它编码线粒体蛋白质乙酰羟酸还原异构酶,该酶催化分支链氨基酸生物合成中的一个步骤。有效抑制发生在ILV5拷贝数仅增加2至3倍的情况下。此外,在具有单拷贝ILV5的delta abf2细胞中,mtDNA稳定性的变化与已知会影响ILV5表达的条件变化直接相关。野生型mtDNA在具有ILV5无效突变(δilv5)的细胞中不稳定,从而导致产生大多数为rhopetite突变体。 δilv5细胞中rho + mtDNA的不稳定性不仅仅是支链氨基酸生物合成受阻的结果,因为mtDNA在具有ILV2基因无效等位基因的细胞中是稳定的,ILV2基因编码该途径的另一种酶。在具有ABF2和ILV5等位基因无效等位基因的细胞中观察到rho + mtDNA最严重的不稳定性。我们建议ILV5编码支链氨基酸生物合成和rho + mtDNA维持所需的双功能蛋白。

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