Institut für Medizinische Mikrobiologie, Universität Zürich, 8006 Zurich, Switzerland.
Functional Genomics Center Zurich, ETH Zürich und Universität Zürich, 8057 Zurich, Switzerland.
Int J Mol Sci. 2022 Apr 15;23(8):4384. doi: 10.3390/ijms23084384.
We have recently identified point mutation V336Y in mitoribosomal protein Mrps5 (uS5m) as a mitoribosomal (ribosomal ambiguity) mutation conferring error-prone mitochondrial protein synthesis. In vivo in transgenic knock-in animals, homologous mutation V338Y was associated with a discrete phenotype including impaired mitochondrial function, anxiety-related behavioral alterations, enhanced susceptibility to noise-induced hearing damage, and accelerated metabolic aging in muscle. To challenge the postulated link between Mrps5 V338Y-mediated misreading and the in vivo phenotype, we introduced mutation G315R into the mouse Mrps5 gene as Mrps5 G315R is homologous to the established bacterial mutation RpsE (uS5) G104R. However, in contrast to bacterial translation, the homologous G → R mutation in mitoribosomal Mrps5 did not affect the accuracy of mitochondrial protein synthesis. Importantly, in the absence of mitochondrial misreading, homozygous mutant mice did not show a phenotype distinct from wild-type animals.
我们最近发现,线粒体核糖体蛋白 Mrps5(uS5m)中的点突变 V336Y 是一种导致线粒体蛋白合成易错的线粒体核糖体(核糖体歧义)突变。在转基因敲入动物体内,同源突变 V338Y 与一种离散的表型相关,包括线粒体功能受损、焦虑相关行为改变、对噪声诱导听力损伤的易感性增强以及肌肉代谢衰老加速。为了挑战 Mrps5 V338Y 介导的错读与体内表型之间的假定联系,我们将突变 G315R 引入小鼠 Mrps5 基因中,因为 Mrps5 G315R 与已建立的细菌突变 RpsE(uS5)G104R 同源。然而,与细菌翻译相反,线粒体核糖体 Mrps5 中的同源 G→R 突变并不影响线粒体蛋白合成的准确性。重要的是,在不存在线粒体错读的情况下,杂合突变小鼠与野生型动物没有明显的表型差异。