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必需的ATP结合盒蛋白RLI1通过促进起始前复合物组装在翻译过程中发挥作用。

The essential ATP-binding cassette protein RLI1 functions in translation by promoting preinitiation complex assembly.

作者信息

Dong Jinsheng, Lai Ruby, Nielsen Klaus, Fekete Christie A, Qiu Hongfang, Hinnebusch Alan G

机构信息

Laboratory of Gene Regulation and Development, NICHD, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

J Biol Chem. 2004 Oct 1;279(40):42157-68. doi: 10.1074/jbc.M404502200. Epub 2004 Jul 23.

Abstract

RLI1 is an essential yeast protein closely related in sequence to two soluble members of the ATP-binding cassette family of proteins that interact with ribosomes and function in translation elongation (YEF3) or translational control (GCN20). We show that affinity-tagged RLI1 co-purifies with eukaryotic translation initiation factor 3 (eIF3), eIF5, and eIF2, but not with other translation initiation factors or with translation elongation or termination factors. RLI1 is associated with 40 S ribosomal subunits in vivo, but it can interact with eIF3 and -5 independently of ribosomes. Depletion of RLI1 in vivo leads to cessation of growth, a lower polysome content, and decreased average polysome size. There was also a marked reduction in 40 S-bound eIF2 and eIF1, consistent with an important role for RLI1 in assembly of 43 S preinitiation complexes in vivo. Mutations of conserved residues in RLI1 expected to function in ATP hydrolysis were lethal. A mutation in the second ATP-binding cassette domain of RLI1 had a dominant negative phenotype, decreasing the rate of translation initiation in vivo, and the mutant protein inhibited translation of a luciferase mRNA reporter in wild-type cell extracts. These findings are consistent with a direct role for the ATP-binding cassettes of RLI1 in translation initiation. RLI1-depleted cells exhibit a deficit in free 60 S ribosomal subunits, and RLI1-green fluorescent protein was found in both the nucleus and cytoplasm of living cells. Thus, RLI1 may have dual functions in translation initiation and ribosome biogenesis.

摘要

RLI1是酵母中的一种必需蛋白,其序列与ATP结合盒蛋白家族的两个可溶性成员密切相关,这两个成员与核糖体相互作用并在翻译延伸(YEF3)或翻译控制(GCN20)中发挥作用。我们发现,带有亲和标签的RLI1与真核翻译起始因子3(eIF3)、eIF5和eIF2共纯化,但不与其他翻译起始因子或翻译延伸或终止因子共纯化。RLI1在体内与40 S核糖体亚基相关,但它可以独立于核糖体与eIF3和-5相互作用。体内RLI1的缺失导致生长停止、多核糖体含量降低和平均多核糖体大小减小。40 S结合的eIF2和eIF1也有明显减少,这与RLI1在体内43 S起始前复合物组装中的重要作用一致。RLI1中预期在ATP水解中起作用的保守残基的突变是致死性的。RLI1第二个ATP结合盒结构域中的一个突变具有显性负性表型,降低了体内翻译起始速率,并且突变蛋白在野生型细胞提取物中抑制荧光素酶mRNA报告基因的翻译。这些发现与RLI1的ATP结合盒在翻译起始中的直接作用一致。RLI1缺失的细胞在游离60 S核糖体亚基方面存在缺陷,并且在活细胞的细胞核和细胞质中都发现了RLI1-绿色荧光蛋白。因此,RLI1可能在翻译起始和核糖体生物发生中具有双重功能。

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