eIF2β zinc-binding domain interacts with the eIF2γ subunit through the guanine nucleotide binding interface to promote Met-tRNAiMet binding.

IF 3.8 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Bioscience Reports Pub Date : 2024-07-31 DOI:10.1042/BSR20240438
Aranyadip Gayen, Pankaj V Alone
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Abstract

The heterotrimeric eIF2 complex consists of a core eIF2γ subunit to which binds eIF2α and eIF2β subunits and plays an important role in delivering the Met-tRNAiMet to the 40S ribosome and start codon selection. The intricacies of eIF2β-γ interaction in promoting Met-tRNAiMet binding are not clearly understood. Previously, the zinc-binding domain (ZBD) eIF2βS264Y mutation was reported to cause Met-tRNAiMet binding defect due to the intrinsic GTPase activity. We showed that the eIF2βS264Y mutation has eIF2β-γ interaction defect. Consistently, the eIF2βT238A intragenic suppressor mutation restored the eIF2β-γ and Met-tRNAiMet binding. The eIF2β-ZBD residues Asn252Asp and Arg253Ala mutation caused Met-tRNAiMet binding defect that was partially rescued by the eIF2βT238A mutation, suggesting the eIF2β-ZBD modulates Met-tRNAiMet binding. The suppressor mutation rescued the translation initiation fidelity defect of the eIF2γN135D SW-I mutation and eIF2βF217A/Q221A double mutation in the HTH domain. The eIF2βT238A suppressor mutation could not rescue the eIF2β binding defect of the eIF2γV281K mutation; however, combining the eIF2βS264Y mutation with the eIF2γV281K mutation was lethal. In addition to the previously known interaction of eIF2β with the eIF2γ subunit via its α1-helix, the eIF2β-ZBD also interacts with the eIF2γ subunit via guanine nucleotide-binding interface; thus, the eIF2β-γ interacts via two distinct binding sites.

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eIF2β 锌结合域通过鸟嘌呤核苷酸结合界面与 eIF2γ 亚基相互作用,促进 Met-tRNAiMet 结合。
异三聚体 eIF2 复合物包括一个核心 eIF2γ 亚基,它与 eIF2α 和 eIF2β 亚基结合,在将 Met-tRNAiMet 运送到 40S 核糖体和起始密码子选择方面发挥重要作用。目前还不清楚 eIF2β-γ 在促进 Met-tRNAiMet 结合过程中相互作用的复杂性。此前有报道称,锌结合域(ZBD)eIF2βS264Y突变会导致Met-tRNAiMet结合缺陷,原因是其内在的GTPase活性。我们发现,eIF2βS264Y突变具有eIF2β-γ相互作用缺陷。同样,eIF2βT238A 基因内抑制突变恢复了 eIF2β-γ 和 Met-tRNAiMet 结合缺陷。eIF2β-ZBD残基Asn252Asp和Arg253Ala突变导致Met-tRNAiMet结合缺陷,而eIF2βT238A突变可部分修复该缺陷,这表明eIF2β-ZBD可调节Met-tRNAiMet的结合。抑制突变可挽救 HTH 结构域中 eIF2γN135D SW-I 突变和 eIF2βF217A/Q221A 双突变导致的翻译起始保真度缺陷。eIF2βT238A抑制突变不能挽救eIF2γV281K突变的eIF2β结合缺陷,但eIF2βS264Y突变与eIF2γV281K突变结合则是致死的。除了之前已知的 eIF2β 通过其 α1-helix 与 eIF2γ 亚基相互作用外,eIF2β-ZBD 还通过鸟嘌呤核苷酸结合界面与 eIF2γ 亚基相互作用;因此,eIF2β-γ 通过两个不同的结合位点相互作用。
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来源期刊
Bioscience Reports
Bioscience Reports 生物-细胞生物学
CiteScore
8.50
自引率
0.00%
发文量
380
审稿时长
6-12 weeks
期刊介绍: Bioscience Reports provides a home for sound scientific research in all areas of cell biology and molecular life sciences. Since 2012, Bioscience Reports has been fully Open Access and publishes all papers under the liberal CC BY licence, giving the life science community quality research to share and discuss.Content before 2012 is subscription-only, and is accessible via archive purchase. Articles are assessed on soundness, providing a home for valid findings and data. We welcome papers that span disciplines (e.g. chemistry, medicine), including papers describing: -new methodologies -tools and reagents to probe biological questions -mechanistic details -disease mechanisms -metabolic processes and their regulation -structure and function -bioenergetics
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