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首页> 外文期刊>The Plant Cell >Dual location of the mitochondrial preprotein transporters B14.7 and Tim23-2 in complex I and the TIM17:23 complex in Arabidopsis links mitochondrial activity and biogenesis.
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Dual location of the mitochondrial preprotein transporters B14.7 and Tim23-2 in complex I and the TIM17:23 complex in Arabidopsis links mitochondrial activity and biogenesis.

机译:线粒体前蛋白转运蛋白B14.7和Tim23-2在复合体I和拟南芥中TIM17:23复合体中的双重位置将线粒体活性与生物发生联系起来。

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Interactions between the respiratory chain and protein import complexes have been previously reported in Saccharomyces cerevisiae, but the biological significance of such interactions remains unknown. Characterization of two mitochondrial preprotein and amino acid transport proteins from Arabidopsis thaliana, NADH dehydrogenase B14.7 like (B14.7 [encoded by At2 g42210]) and Translocase of the inner membrane subunit 23-2 (Tim23-2 [encoded by At1 g72750]), revealed both proteins are present in respiratory chain complex I and the Translocase of the Inner Membrane 17:23. Whereas depletion of B14.7 by T-DNA insertion is lethal, Tim23-2 can be depleted without lethality. Subtle overexpression of Tim23-2 results in a severe delayed growth phenotype and revealed an unexpected, inverse correlation between the abundance of Tim23-2 and the abundance of respiratory complex I. This newly discovered relationship between protein import and respiratory function was confirmed through the investigation of independent complex I knockout mutants, which were found to have correspondingly increased levels of Tim23-2. This increase in Tim23-2 was also associated with delayed growth phenotypes, increased abundance of other import components, and an increased capacity for mitochondrial protein import. Analysis of the Tim23-2-overexpressing plants through global quantitation of transcript abundance and in-organelle protein synthesis assays revealed widespread alterations in transcript abundance of genes encoding mitochondrial proteins and altered rates of mitochondrial protein translation, indicating a pivotal relationship between the machinery of mitochondrial biogenesis and mitochondrial function.
机译:先前已经在酿酒酵母中报道了呼吸链和蛋白质输入复合物之间的相互作用,但是这种相互作用的生物学意义仍然未知。拟南芥的两个线粒体前蛋白和氨基酸转运蛋白,NADH脱氢酶B14.7类似物(B14.7 [由At2 g42210编码])和内膜亚基23-2的Translocase(Tim23-2 [At1 g72750编码])的表征]),揭示这两种蛋白质均存在于呼吸链复合体I和内膜的Translocase 17:23中。尽管通过T-DNA插入对B14.7的破坏是致命的,但Tim23-2可以在没有致命性的情况下被消耗。 Tim23-2的微妙过表达导致严重的生长表型延迟,并揭示了Tim23-2的丰度与呼吸道复合物I的丰度之间存在意想不到的逆相关性。这项新发现的蛋白质进口与呼吸功能之间的关系已通过研究得到证实独立的复合体I敲除突变体的突变体,发现其具有相应增加的Tim23-2水平。 Tim23-2的这种增加还与生长表型延迟,其他输入成分的丰度增加以及线粒体蛋白质输入能力的增加有关。通过全局定量转录本丰度和器官内蛋白质合成分析对Tim23-2-过表达植物的分析显示,编码线粒体蛋白质的基因的转录本丰度发生了广泛的变化,并且线粒体蛋白质翻译的速率发生了变化,这表明线粒体机制之间存在关键关系生物发生和线粒体功能。

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