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通过从细胞质中导入tRNA实现线粒体翻译适应机制的证据。

Evidence for an adaptation mechanism of mitochondrial translation via tRNA import from the cytosol.

作者信息

Kamenski Piotr, Kolesnikova Olga, Jubenot Vanessa, Entelis Nina, Krasheninnikov Igor A, Martin Robert P, Tarassov Ivan

机构信息

UMR 7156, CNRS, Université Louis Pasteur, Department of Molecular and Cellular Genetics, 21 rue René Descartes, 67084 Strasbourg, France.

出版信息

Mol Cell. 2007 Jun 8;26(5):625-37. doi: 10.1016/j.molcel.2007.04.019.

Abstract

Although mitochondrial import of nuclear DNA-encoded RNAs is widely occurring, their functions in the organelles are not always understood. Mitochondrial function(s) of tRNA(Lys)(CUU), tRK1, targeted into Saccharomyces cerevisiae mitochondria was mysterious, since mitochondrial DNA-encoded tRNA(Lys)(UUU), tRK3, was hypothesized to decode both lysine codons, AAA and AAG. Mitochondrial targeting of tRK1 depends on the precursor of mitochondrial lysyl-tRNA synthetase, pre-Msk1p. Here we show that substitution of pre-Msk1p by its Ashbya gossypii ortholog results in a strain in which tRK3 is aminoacylated, while tRK1 is not imported. At elevated temperature, drop of tRK1 import inhibits mitochondrial translation of mRNAs containing AAG codons, which coincides with the impaired 2-thiolation of tRK3 anticodon wobble nucleotide. Restoration of tRK1 import cures the translational defect, suggesting the role of tRK1 in conditional adaptation of mitochondrial protein synthesis. In contrast with the known ways of organellar translation control, this mechanism exploits the RNA import pathway.

摘要

尽管核DNA编码的RNA向线粒体的导入广泛存在,但其在细胞器中的功能并不总是为人所理解。靶向酿酒酵母线粒体的tRNA(Lys)(CUU)、tRK1的线粒体功能一直很神秘,因为线粒体DNA编码的tRNA(Lys)(UUU)、tRK3被认为可解码赖氨酸密码子AAA和AAG。tRK1的线粒体靶向依赖于线粒体赖氨酰-tRNA合成酶的前体pre-Msk1p。在此我们表明,用其棉阿舒囊霉直系同源物替代pre-Msk1p会产生一种菌株,其中tRK3被氨酰化,而tRK1未被导入。在高温下,tRK1导入的下降会抑制含有AAG密码子的mRNA的线粒体翻译,这与tRK3反密码子摆动核苷酸的2-硫代化受损相吻合。tRK1导入的恢复可治愈翻译缺陷,表明tRK1在调节线粒体蛋白质合成的条件适应中发挥作用。与已知的细胞器翻译控制方式不同,这种机制利用了RNA导入途径。

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