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针对错译的基因选择挽救了酵母中一种有缺陷的共伴侣蛋白。

Genetic selection for mistranslation rescues a defective co-chaperone in yeast.

作者信息

Hoffman Kyle S, Berg Matthew D, Shilton Brian H, Brandl Christopher J, O'Donoghue Patrick

机构信息

Department of Biochemistry, The University of Western Ontario, London, ON N6A 5C1, Canada.

Department of Chemistry, The University of Western Ontario, London, ON N6A 5B7, Canada.

出版信息

Nucleic Acids Res. 2017 Apr 7;45(6):3407-3421. doi: 10.1093/nar/gkw1021.

Abstract

Despite the general requirement for translation fidelity, mistranslation can be an adaptive response. We selected spontaneous second site mutations that suppress the stress sensitivity caused by a Saccharomyces cerevisiae tti2 allele with a Leu to Pro mutation at residue 187, identifying a single nucleotide mutation at the same position (C70U) in four tRNAProUGG genes. Linkage analysis and suppression by SUF9G3:U70 expressed from a centromeric plasmid confirmed the causative nature of the suppressor mutation. Since the mutation incorporates the G3:U70 identity element for alanyl-tRNA synthetase into tRNAPro, we hypothesized that suppression results from mistranslation of Pro187 in Tti2L187P as Ala. A strain expressing Tti2L187A was not stress sensitive. In vitro, tRNAProUGG (C70U) was mis-aminoacylated with alanine by alanyl-tRNA synthetase, but was not a substrate for prolyl-tRNA synthetase. Mass spectrometry from protein expressed in vivo and a novel GFP reporter for mistranslation confirmed substitution of alanine for proline at a rate of ∼6%. Mistranslating cells expressing SUF9G3:U70 induce a partial heat shock response but grow nearly identically to wild-type. Introducing the same G3:U70 mutation in SUF2 (tRNAProAGG) suppressed a second tti2 allele (tti2L50P). We have thus identified a strategy that allows mistranslation to suppress deleterious missense Pro mutations in Tti2.

摘要

尽管通常需要翻译保真度,但错义翻译也可能是一种适应性反应。我们选择了自发的第二位点突变,这些突变可抑制由酿酒酵母tti2等位基因引起的应激敏感性,该等位基因在第187位残基处发生了从亮氨酸到脯氨酸的突变,在四个tRNAProUGG基因的同一位置(C70U)鉴定出一个单核苷酸突变。通过着丝粒质粒表达的SUF9G3:U70进行的连锁分析和抑制作用证实了抑制突变的致病性质。由于该突变将丙氨酰-tRNA合成酶的G3:U70识别元件整合到tRNAPro中,我们推测抑制作用是由于Tti2L187P中第187位脯氨酸错义翻译为丙氨酸所致。表达Tti2L187A的菌株对压力不敏感。在体外,丙氨酰-tRNA合成酶将tRNAProUGG(C70U)错误地氨酰化为丙氨酸,但它不是脯氨酰-tRNA合成酶的底物。体内表达的蛋白质的质谱分析和一种用于错义翻译的新型GFP报告基因证实,丙氨酸以约6%的速率替代脯氨酸。表达SUF9G3:U70的错义翻译细胞诱导了部分热休克反应,但生长情况与野生型几乎相同。在SUF2(tRNAProAGG)中引入相同的G3:U70突变抑制了第二个tti2等位基因(tti2L50P)。因此,我们确定了一种策略,该策略允许错义翻译抑制Tti2中有害的错义脯氨酸突变。

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