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在寄生线虫旋毛虫物种中发现的线粒体翻译系统的进化“中间状态”:tRNA与延伸因子Tu的共同进化

An evolutionary 'intermediate state' of mitochondrial translation systems found in Trichinella species of parasitic nematodes: co-evolution of tRNA and EF-Tu.

作者信息

Arita Masashi, Suematsu Takuma, Osanai Arihiro, Inaba Takashi, Kamiya Haruo, Kita Kiyoshi, Sisido Masahiko, Watanabe Yoh-ichi, Ohtsuki Takashi

机构信息

Department of Bioscience and Biotechnology, Okayama University, 3-1-1 Tsushimanaka, Okayama 700-8530, Japan.

出版信息

Nucleic Acids Res. 2006;34(18):5291-9. doi: 10.1093/nar/gkl526. Epub 2006 Sep 29.

Abstract

EF-Tu delivers aminoacyl-tRNAs to ribosomes in the translation system. However, unusual truncations found in some animal mitochondrial tRNAs seem to prevent recognition by a canonical EF-Tu. We showed previously that the chromadorean nematode has two distinct EF-Tus, one of which (EF-Tu1) binds only to T-armless aminoacyl-tRNAs and the other (EF-Tu2) binds to D-armless Ser-tRNAs. Neither of the EF-Tus can bind to canonical cloverleaf tRNAs. In this study, by analyzing the translation system of enoplean nematode Trichinella species, we address how EF-Tus and tRNAs have evolved from the canonical structures toward those of the chromadorean translation system. Trichinella mitochondria possess three types of tRNAs: cloverleaf tRNAs, which do not exist in chromadorean nematode mitochondria; T-armless tRNAs; and D-armless tRNAs. We found two mitochondrial EF-Tu species, EF-Tu1 and EF-Tu2, in Trichinella britovi. T.britovi EF-Tu2 could bind to only D-armless Ser-tRNA, as Caenorhabditis elegans EF-Tu2 does. In contrast to the case of C.elegans EF-Tu1, however, T.britovi EF-Tu1 bound to all three types of tRNA present in Trichinella mitochondria. These results suggest that Trichinella mitochondrial translation system, and particularly the tRNA-binding specificity of EF-Tu1, could be an intermediate state between the canonical system and the chromadorean nematode mitochondrial system.

摘要

在翻译系统中,延伸因子Tu(EF-Tu)将氨酰tRNA转运至核糖体。然而,在一些动物线粒体tRNA中发现的异常截短似乎会阻止其被典型的EF-Tu识别。我们之前表明,色矛线虫纲线虫有两种不同的EF-Tu,其中一种(EF-Tu1)仅与无T臂的氨酰tRNA结合,另一种(EF-Tu2)与无D臂的丝氨酸tRNA结合。这两种EF-Tu都不能与典型的三叶草形tRNA结合。在本研究中,通过分析内肛线虫旋毛虫属物种的翻译系统,我们探讨了EF-Tu和tRNA是如何从典型结构演变为色矛线虫纲翻译系统的结构的。旋毛虫线粒体拥有三种类型的tRNA:三叶草形tRNA(色矛线虫纲线虫线粒体中不存在)、无T臂的tRNA和无D臂的tRNA。我们在布氏旋毛虫中发现了两种线粒体EF-Tu,即EF-Tu1和EF-Tu2。布氏旋毛虫的EF-Tu2只能与无D臂的丝氨酸tRNA结合,秀丽隐杆线虫的EF-Tu2也是如此。然而,与秀丽隐杆线虫的EF-Tu1不同,布氏旋毛虫的EF-Tu1能与旋毛虫线粒体中存在的所有三种类型的tRNA结合。这些结果表明,旋毛虫线粒体翻译系统,尤其是EF-Tu1的tRNA结合特异性,可能是典型系统和色矛线虫纲线虫线粒体系统之间的中间状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfc0/1636415/c0c52e3b52d3/gkl526f1.jpg

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