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翻译起始因子5A及其hypusine修饰对于酿酒酵母的细胞活力至关重要。

Translation initiation factor 5A and its hypusine modification are essential for cell viability in the yeast Saccharomyces cerevisiae.

作者信息

Schnier J, Schwelberger H G, Smit-McBride Z, Kang H A, Hershey J W

机构信息

Department of Biological Chemistry, School of Medicine, University of California, Davis 95616.

出版信息

Mol Cell Biol. 1991 Jun;11(6):3105-14. doi: 10.1128/mcb.11.6.3105-3114.1991.

Abstract

Translation intitiation factor eIF-5A (previously named eIF-4D) is a highly conserved protein that promotes formation of the first peptide bond. One of its lysine residues is modified by spermidine to form hypusine, a posttranslational modification unique to eIF-5A. To elucidate the function of eIF-5A and determine the role of its hypusine modification, the cDNA encoding human eIF-5A was used as a probe to identify and clone the corresponding genes from the yeast Saccharomyces cerevisiae. Two genes named TIF51A and TIF51B were cloned and sequenced. The two yeast proteins are closely related, sharing 90% sequence identity, and each is ca. 63% identical to the human protein. The purified protein expressed from the TIF51A gene substitutes for HeLa eIF-5A in the mammalian methionyl-puromycin synthesis assay. Strains lacking the A form of eIF-5A, constructed by disruption of TIF51A with LEU2, grow slowly, whereas strains lacking the B form, in which HIS3 was used to disrupt TIF51B, show no growth rate phenotype. However, strains with both TIF51A and TIF51B disrupted are not viable, indicating that eIF-5a is essential for cell growth in yeast cells. Northern (RNA) blot analysis shows two mRNA species, a larger mRNA (0.9 kb) transcribed from TIF51A and a smaller mRNA (0.8 kb) encoded by TIF51B. Under the aerobic growth conditions of this study, the 0.8-kb TIF51B transcript is not detected in the wild-type strain and is expressed only when TIF51A is disrupted. The TIF51A gene was altered by site-directed mutagenesis at the site of hypusination by changing the Lys codon to that for Arg, thereby producing a stable protein that retains the positive charge but is not modified to the hypusine derivative. The plasmid shuffle technique was used to replace the wild-type gene with the mutant form, resulting in failure of the yeast cells to grow. This result indicates that hypusine very likely is required for the vital in vivo function of eIF-5A and suggests a precise, essential role for the polyamine spermidine in cell metabolism.

摘要

翻译起始因子eIF - 5A(以前称为eIF - 4D)是一种高度保守的蛋白质,可促进第一个肽键的形成。其赖氨酸残基之一被亚精胺修饰形成hypusine,这是eIF - 5A特有的一种翻译后修饰。为了阐明eIF - 5A的功能并确定其hypusine修饰的作用,编码人eIF - 5A的cDNA被用作探针,从酿酒酵母中鉴定并克隆相应基因。克隆并测序了两个名为TIF51A和TIF51B的基因。这两种酵母蛋白密切相关,序列同一性为90%,并且每种与人类蛋白的同一性约为63%。从TIF51A基因表达的纯化蛋白在哺乳动物甲硫氨酰 - 嘌呤霉素合成试验中可替代HeLa细胞的eIF - 5A。通过用LEU2破坏TIF51A构建的缺乏A形式eIF - 5A的菌株生长缓慢,而用HIS3破坏TIF51B构建的缺乏B形式的菌株没有生长速率表型。然而,TIF51A和TIF51B均被破坏的菌株无法存活,这表明eIF - 5a对酵母细胞的生长至关重要。Northern(RNA)印迹分析显示两种mRNA种类,一种较大的mRNA(0.9 kb)由TIF51A转录,一种较小的mRNA(0.8 kb)由TIF51B编码。在本研究的有氧生长条件下,野生型菌株中未检测到0.8 kb的TIF51B转录本,仅在TIF51A被破坏时才表达。通过定点诱变将TIF51A基因在hypusination位点的赖氨酸密码子改变为精氨酸密码子,从而产生一种稳定的蛋白质,该蛋白质保留正电荷但未被修饰为hypusine衍生物。使用质粒洗牌技术用突变形式取代野生型基因,导致酵母细胞无法生长。该结果表明hypusine很可能是eIF - 5A体内重要功能所必需的,并提示多胺亚精胺在细胞代谢中具有精确的重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1066/360154/c70ce06ea9ef/molcellb00140-0201-a.jpg

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