首页> 外文期刊>Nucleic acids research >Adapted formaldehyde gradient cross-linking protocol implicates human eIF3d and eIF3c, k and l subunits in the 43S and 48S pre-initiation complex assembly, respectively
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Adapted formaldehyde gradient cross-linking protocol implicates human eIF3d and eIF3c, k and l subunits in the 43S and 48S pre-initiation complex assembly, respectively

机译:适应的甲醛梯度交联协议介绍了43s和48s预发起复杂组件中的人类EIF3D和EIF3C,K和L子单元

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One of the key roles of the 12-subunit eukaryotic translation initiation factor 3 (eIF3) is to promote the formation of the 43S and 48S pre-initiation complexes (PICs). However, particular contributions of its individual subunits to these two critical initiation reactions remained obscure. Here, we adapted formaldehyde gradient cross-linking protocol to translation studies and investigated the efficiency of the 43S and 48S PIC assembly in knockdowns of individual subunits of human eIF3 known to produce various partial subcomplexes. We revealed that eIF3d constitutes an important intermolecular bridge between eIF3 and the 40S subunit as its elimination from the eIF3 holocomplex severely compromised the 43S PIC assembly. Similarly, subunits eIF3a, c and e were found to represent an important binding force driving eIF3 binding to the 40S subunit. In addition, we demonstrated that eIF3c, and eIF3k and l subunits alter the efficiency of mRNA recruitment to 43S PICs in an opposite manner. Whereas the eIF3c knockdown reduces it, downregulation of eIF3k or eIF3l increases mRNA recruitment, suggesting that the latter subunits possess a regulatory potential. Altogether this study provides new insights into the role of human eIF3 in the initial assembly steps of the translational machinery.
机译:12-亚基真核翻译引发因子3(EIF3)的关键作用之一是促进43s和48s预发起复合物(PIC)的形成。但是,其个体亚基对这两个关键起始反应的特别贡献仍然是模糊的。在这里,我们适应了甲醛梯度交联方案来翻译研究,并研究了43s和48s PIC组装的效率,以众所周知的人EIF3的单个亚基的敲低。我们透露,EIF3D构成EIF3和40S子单元之间的重要分子间桥,因为它从EIF3全能复用严重损害了43s PIC组件。类似地,发现亚基EIF3A,C和E表示将EIF3与40S亚基结合的重要结合力。此外,我们证明了EIF3C和EIF3K和L亚基以相反的方式改变mRNA招募到43年照片的效率。虽然EIF3C敲低减少了它,但eIF3K或EIF3L的下调增加了mRNA招聘,表明后亚基具有监管潜力。本研究中,本研究为人类EIF3在翻译机械的初始装配步骤中提供了新的见解。

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