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

机译:eIF2β 锌结合结构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

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摘要

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.
机译:异源三聚体 eIF2 复合物由一个核心 eIF2γ 亚基组成,该亚基与 eIF2α 和 eIF2β 亚基结合,并在将 Met-tRNAiMet 递送至 40S 核糖体和开始密码子选择中发挥重要作用。eIF2β-γ 相互作用在促进 Met-tRNAiMet 结合方面的复杂性尚不清楚。以前,据报道,由于内在 GTP 酶活性,锌结合域 (ZBD) eIF2βS264Y 突变会导致 Met-tRNAiMet 结合缺陷。我们发现 eIF2βS264Y 突变具有 eIF2β-γ 相互作用缺陷。一致地,eIF2βT238A 基因内抑制基因突变恢复了 eIF2β-γ 和 Met-tRNAiMet 结合。eIF2β-ZBD 残基 Asn252Asp 和 Arg253Ala 突变导致 Met-tRNAiMet 结合缺陷,该缺陷被 eIF2βT238A 突变部分挽救,表明 eIF2β-ZBD 调节 Met-tRNAiMet 结合。抑制突变挽救了 HTH 结构域中 eIF2γN135D SW-I 突变和 eIF2βF217A/Q221A 双突变的翻译起始保真度缺陷。eIF2βT238A 抑制基因突变无法挽救 eIF2γV281K 突变的 eIF2β 结合缺陷;然而,将 eIF2βS264Y 突变与 eIF2γV281K 突变联合使用是致命的。除了先前已知的 eIF2β 通过其 α1-螺旋与 eIF2γ 亚基的相互作用外,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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