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Two independent activities define Ccm1p as a moonlighting protein in Saccharomyces cerevisiae

机译:两项独立的活动将Ccm1p定义为酿酒酵母中的月光蛋白

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Ccm1p is a nuclear-encoded PPR (pentatricopeptide repeat) protein that localizes into mitochondria of Saccharomyces cerevisiae. It was first defined as an essential factor to remove the bI4 [COB (cytochrome b) fourth intron)] and aI4 [COX1 (cytochrome c oxidase subunit 1) fourth intron] of pre-mRNAs, along with bI4 maturase, a protein encoded by part of bI4 and preceding exons that removes the intronic RNA sequence that codes for it. Later on, Ccm1p was described as key to maintain the steady-state levels of the mitoribosome small subunit RNA (15S rRNA). bI4 maturase is produced inside the mitochondria and therefore its activity depends on the functionality of mitochondrial translation. This report addresses the dilemma of whether Ccm1p supports bI4 maturase activity by keeping steady-state levels of 15S rRNA or separately and directly supports bI4 maturase activity per se. Experiments involving loss of Ccm1p, SMDC (sudden mitochondrial deprivation of Ccm1p) and mutations in one of the PPR (pentatricopeptide repeat) motifs revealed that the failure of bI4 maturase activity in CCM1 deletion mutants was not due to a malfunction of the translational machinery. Both functions were found to be independent, defining Ccm1p as a moonlighting protein. bI4 maturase activity was significantly more dependent on Ccm1p levels than the maintenance of 15S rRNA. The novel strategy of SMDC described here allowed the study of immediate short-term effects, before the mutant phenotype was definitively established. This approach can be also applied for further studies on 15S rRNA stability and mitoribosome assembly.
机译:Ccm1p是一种核编码的PPR(五肽重复序列)蛋白,位于啤酒酵母的线粒体中。首先将其定义为去除pre-mRNA的bI4 [COB(细胞色素b)第四内含子)和aI4 [COX1(细胞色素c氧化酶亚基1)第四内含子]以及bI4成熟酶的必需因子,bI4成熟酶是由bI4和先前外显子的一部分,可删除为其编码的内含子RNA序列。后来,Ccm1p被描述为维持线粒体小亚基RNA(15S rRNA)稳态水平的关键。 bI4成熟酶在线粒体内产生,因此其活性取决于线粒体翻译的功能。该报告解决了Ccm1p是否通过保持15S rRNA的稳态水平或单独支持bI4成熟酶活性而直接支持bI4成熟酶活性的难题。涉及Ccm1p缺失,SMDC(线粒体突然剥夺Ccm1p)和一个PPR(五肽重复序列)基序突变的实验表明,CCM1缺失突变体中bI4成熟酶活性的失败并不是由于翻译机制的故障。发现这两个功能是独立的,将Ccm1p定义为月光蛋白。与15S rRNA的维持相比,bI4成熟酶活性对Ccm1p水平的依赖性更大。这里描述的SMDC的新策略允许在确定突变体表型之前立即研究短期效应。该方法还可用于15S rRNA稳定性和线粒体组装的进一步研究。

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