Translational control of endogenous and recoded nuclear genes in yeast mitochondria: regulation and membrane targeting.

Experientia Pub Date : 1996-12-15 DOI:10.1007/BF01952112
T D Fox
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引用次数: 45

Abstract

Mitochondrial gene expression in yeast, Saccharomyces cerevisiae, depends on translational activation of individual mRNAs by distinct proteins encoded in the nucleus. These unclearly coded mRNA-specific translational activators are bound to the inner membrane and function to mediate the interaction between mRNAs and mitochondrial ribosomes. This complex system, found to date only in organelles, appears to be an adaptation for targeting the synthesis of mitochondrially coded integral membrane proteins to the membrane. In addition, mRNA-specific translational activation is a rate-limiting step used to modulate expression of at least one mitochondrial gene in response to environmental conditions. Direct study of mitochondrial gene regulation and the targeting of mitochondrially coded proteins in vivo will now be possible using synthetic genes inserted into mtDNA that encode soluble reporter/passenger proteins.

酵母线粒体内源和重编码核基因的翻译控制:调控和膜靶向。
在酵母(Saccharomyces cerevisiae)中,线粒体基因的表达依赖于细胞核中编码的不同蛋白质对单个mrna的翻译激活。这些编码不明确的mrna特异性翻译激活因子与内膜结合,并介导mrna与线粒体核糖体之间的相互作用。这个复杂的系统,迄今为止只在细胞器中发现,似乎是针对线粒体编码的完整膜蛋白合成到膜的适应。此外,mrna特异性翻译激活是一种限速步骤,用于调节至少一种线粒体基因的表达,以响应环境条件。现在,通过将合成基因插入编码可溶性报告蛋白/客运蛋白的mtDNA中,可以直接研究线粒体基因调控和体内线粒体编码蛋白的靶向性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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