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Specialized ribosomes and specific ribosomal protein paralogs control translation of mitochondrial proteins

机译:专业核糖体和特异性核糖体蛋白常规蛋白酶控制线粒体蛋白的翻译

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摘要

Genome duplication in eukaryotes created paralog pairs of ribosomal proteins (RPs) that show high sequence similarity/identity. However, individual paralogs can confer vastly different effects upon cellular processes, e.g., specific yeast paralogs regulate actin organization, bud site selection, and mRNA localization, although how specificity is conferred is unknown. Changes in the RP composition of ribosomes might allow for specialized translation of different subsets of mRNAs, yet it is unclear whether specialized ribosomes exist and if paralog specificity controls translation. Using translatome analyses, we show that the translation of mitochondrial proteins is highly down-regulated in yeast lacking RP paralogs required for normal mitochondrial function (e.g., RPL1b ). Although RPL1a and RPL1b encode identical proteins, Rpl1b-containing ribosomes confer more efficient translation of respiration-related proteins. Thus, ribosomes varying in RP composition may confer specialized functions, and RP paralog specificity defines a novel means of translational control.
机译:真核生物中的基因组重复产生了显示出高序列相似性/身份的核糖体蛋白(RPS)。然而,单个寄生虫可以赋予细胞过程的巨大效果,例如,特定的酵母寄生虫调节肌动蛋白组织,芽位点,萌芽,虽然赋予特异性是如何未知的。核糖体RP组合物的变化可能允许MRNA的不同子集的专业翻译,但目前尚不清楚是否存在专用核糖体以及副病虫病特异性控制翻译。使用翻译分析,我们表明线粒体蛋白的翻译在缺乏正常线粒体功能所需的RP旁阻蛋白酶(例如,RPL1B)中的酵母中的高度调节。虽然RPL1A和RPL1B编码相同的蛋白质,但含有RPL1B的核糖体赋予呼吸相关蛋白质的更有效翻译。因此,在RP组合物中变化的核糖体可以赋予专用功能,并且RP Paralog特异性定义了一种新颖的平移控制方法。

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