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蓝藻线粒体 tRNA 扮演双重角色。

Cyanophora paradoxa mitochondrial tRNAs play a double game.

机构信息

Institut de Biologie Moléculaire des Plantes-CNRS, Université de Strasbourg, Strasbourg, France.

出版信息

Plant J. 2021 May;106(4):1105-1115. doi: 10.1111/tpj.15222. Epub 2021 Apr 1.

Abstract

Present-day mitochondria derive from a single endosymbiosis of an α-proteobacterium into a proto-eukaryotic cell. Since this monophyletic event, mitochondria have evolved considerably, and unique traits have been independently acquired in the different eukaryotic kingdoms. Mitochondrial genome expression and RNA metabolism have diverged greatly. Here, Cyanophora paradoxa, a freshwater alga considered as a living fossil among photosynthetic organisms, represents an exciting model for studying the evolution of mitochondrial gene expression. As expected, fully mature tRNAs are released from primary transcripts to function in mitochondrial translation. We also show that these tRNAs take part in an mRNA processing punctuation mechanism in a non-conventional manner, leading to mRNA-tRNA hybrids with a CCA triplet at their 3'-extremities. In this case, tRNAs are probably used as stabilizing structures impeding the degradation of mRNA by exonucleases. From our data we propose that the present-day tRNA-like elements (t-elements) found at the 3'-terminals of mitochondrial mRNAs in land plants originate from true tRNAs like those observed in the mitochondria of this basal photosynthetic glaucophyte.

摘要

现今的线粒体起源于一个α-变形菌的单一内共生体进入原真核细胞。自这个单系事件以来,线粒体经历了巨大的进化,并且在不同的真核生物王国中独立获得了独特的特征。线粒体基因组的表达和 RNA 代谢已经发生了很大的分歧。在这里,蓝藻 Cyanophora paradoxa,一种被认为是光合生物活化石的淡水藻类,代表了一个研究线粒体基因表达进化的令人兴奋的模型。正如预期的那样,完全成熟的 tRNA 从初级转录物中释放出来,在线粒体翻译中发挥作用。我们还表明,这些 tRNA 以一种非传统的方式参与 mRNA 加工标点机制,导致其 3'-末端带有 CCA 三核苷酸的 mRNA-tRNA 杂种。在这种情况下,tRNA 可能被用作稳定结构,阻止外切核酸酶降解 mRNA。根据我们的数据,我们提出在陆生植物的线粒体 mRNA 3'-末端发现的现今的 tRNA 样元件(t-元件)起源于真正的 tRNA,就像在这个基础光合蓝藻的线粒体中观察到的那样。

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