Institute of Parasitology, Biology Centre, Czech Academy of Sciences and Faculty of Sciences, University of South Bohemia, České Budějovice (Budweis), Czech Republic.
Department of Microbiology, Ohio State Biochemistry Program and The Center for RNA Biology, The Ohio State University, Columbus, OH, USA.
IUBMB Life. 2018 Dec;70(12):1207-1213. doi: 10.1002/iub.1957. Epub 2018 Oct 25.
Organisms have evolved different strategies to seclude certain molecules to specific locations of the cell. This is most pronounced in eukaryotes with their extensive intracellular membrane systems. Intracellular compartmentalization is particularly critical in genome containing organelles, which because of their bacterial evolutionary ancestry still maintain protein-synthesis machinery that resembles more their evolutionary origin than the extant eukaryotic cell they once joined as an endosymbiont. Despite this, it is clear that genome-containing organelles such as the mitochondria are not in isolation and many molecules make it across the mitochondrial membranes from the cytoplasm. In this realm the import of tRNAs and the enzymes that modify them prove most consequential. In this review, we discuss two recent examples of how modifications typically found in cytoplasmic tRNAs affect mitochondrial translation in organisms that forcibly import all their tRNAs from the cytoplasm. In our view, the combination of tRNA import and the compartmentalization of modification enzymes must have played a critical role in the evolution of the organelle. © 2018 IUBMB Life, 70(12):1207-1213, 2018.
生物已经进化出不同的策略来将某些分子隔离到细胞的特定位置。在具有广泛细胞内膜系统的真核生物中,这种情况最为明显。细胞内区室化在含有基因组的细胞器中尤为关键,由于其细菌进化起源,这些细胞器仍然保留着蛋白质合成机制,这些机制与其进化起源更相似,而不是它们曾经作为内共生体加入的现存真核细胞。尽管如此,显然含有基因组的细胞器,如线粒体,并不是孤立的,许多分子从细胞质穿过线粒体膜。在这个领域,tRNA 的输入以及修饰它们的酶的输入证明是最重要的。在这篇综述中,我们讨论了最近的两个例子,说明通常在细胞质 tRNA 中发现的修饰如何影响从细胞质强制输入所有 tRNA 的生物体中的线粒体翻译。在我们看来,tRNA 输入的组合和修饰酶的区室化在细胞器的进化中一定发挥了关键作用。© 2018 IUBMB Life,70(12):1207-1213,2018。