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Ribosome-binding proteins Mdm38 and Mba1 display overlapping functions for regulation of mitochondrial translation

机译:核糖体结合蛋白Mdm38和Mba1显示重叠的功能,调节线粒体翻译

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摘要

Biogenesis of respiratory chain complexes depends on the expression of mitochondrial-encoded subunits. Their synthesis occurs on membrane-associated ribosomes and is probably coupled to their membrane insertion. Defects in expression of mitochondrial translation products are among the major causes of mitochondrial disorders. Mdm38 is related to Letm1, a protein affected in Wolf-Hirschhorn syndrome patients. Like Mba1 and Oxa1, Mdm38 is an inner membrane protein that interacts with ribosomes and is involved in respiratory chain biogenesis. We find that simultaneous loss of Mba1 and Mdm38 causes severe synthetic defects in the biogenesis of cytochrome reductase and cytochrome oxidase. These defects are not due to a compromised membrane binding of ribosomes but the consequence of a mis-regulation in the synthesis of Cox1 and cytochrome b. Cox1 expression is restored by replacing Cox1-specific regulatory regions in the mRNA. We conclude, that Mdm38 and Mba1 exhibit overlapping regulatory functions in translation of selected mitochondrial mRNAs.
机译:呼吸链复合物的生物发生取决于线粒体编码的亚基的表达。它们的合成发生在膜相关的核糖体上,可能与它们的膜插入有关。线粒体翻译产物的表达缺陷是线粒体疾病的主要原因。 Mdm38与Letm1有关,Letm1是在Wolf-Hirschhorn综合征患者中受影响的一种蛋白质。像Mba1和Oxa1一样,Mdm38是与核糖体相互作用的内膜蛋白,参与呼吸链的生物发生。我们发现Mba1和Mdm38同时丢失会导致细胞色素还原酶和细胞色素氧化酶的生物合成中的严重合成缺陷。这些缺陷不是由于核糖体的膜结合受损,而是由于Cox1和细胞色素b的合成中调控不当的结果。通过替换mRNA中的Cox1特异性调控区,可恢复Cox1的表达。我们得出的结论是,Mdm38和Mba1在所选线粒体mRNA的翻译中显示出重叠的调节功能。

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