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GTP-dependent structural rearrangement of the eRF1:eRF3 complex and eRF3 sequence motifs essential for PABP binding

机译:GRF依赖的eRF1:eRF3复合体和eRF3序列基序的GTP结构重排对于PABP结合至关重要

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摘要

Translation termination in eukaryotes is governed by the concerted action of eRF1 and eRF3 factors. eRF1 recognizes the stop codon in the A site of the ribosome and promotes nascent peptide chain release, and the GTPase eRF3 facilitates this peptide release via its interaction with eRF1. In addition to its role in termination, eRF3 is involved in normal and nonsense-mediated mRNA decay through its association with cytoplasmic poly(A)-binding protein (PABP) via PAM2-1 and PAM2-2 motifs in the N-terminal domain of eRF3. We have studied complex formation between full-length eRF3 and its ligands (GDP, GTP, eRF1 and PABP) using isothermal titration calorimetry, demonstrating formation of the eRF1:eRF3:PABP:GTP complex. Analysis of the temperature dependence of eRF3 interactions with G nucleotides reveals major structural rearrangements accompanying formation of the eRF1:eRF3:GTP complex. This is in contrast to eRF1:eRF3:GDP complex formation, where no such rearrangements were detected. Thus, our results agree with the established active role of GTP in promoting translation termination. Through point mutagenesis of PAM2-1 and PAM2-2 motifs in eRF3, we demonstrate that PAM2-2, but not PAM2-1 is indispensible for eRF3:PABP complex formation.
机译:真核生物的翻译终止受eRF1和eRF3因子共同作用的支配。 eRF1识别核糖体A位点的终止密码子并促进新生肽链的释放,而GTPase eRF3通过其与eRF1的相互作用而促进了该肽的释放。除了其终止作用外,eRF3还通过其N端结构域的PAM2-1和PAM2-2基序与胞质多聚结合蛋白(PABP)结合,参与正常和无义介导的mRNA降解。 eRF3。我们使用等温滴定热法研究了全长eRF3及其配体(GDP,GTP,eRF1和PABP)之间的络合物形成,证明了eRF1:eRF3:PABP:GTP络合物的形成。对eRF3与G核苷酸相互作用的温度依赖性的分析揭示了伴随eRF1:eRF3:GTP复合物形成的主要结构重排。这与eRF1:eRF3:GDP复合体形成相反,后者未检测到此类重排。因此,我们的结果与GTP在促进翻译终止中所​​确立的积极作用相吻合。通过点诱变eRF3中的PAM2-1和PAM2-2模体,我们证明PAM2-2(但不是PAM2-1)对于eRF3:PABP复合物的形成是必不可少的。

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