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Two alternative binding mechanisms connect the protein translocation Sec71-Sec72 complex with heat shock proteins

机译:两种替代结合机制将蛋白易位Sec71-Sec72复合体与热激蛋白连接起来

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摘要

The biosynthesis of many eukaryotic proteins requires accurate targeting to and translocation across the endoplasmic reticulum membrane. Post-translational protein translocation in yeast requires both the Sec61 translocation channel, and a complex of four additional proteins: Sec63, Sec62, Sec71, and Sec72. The structure and function of these proteins are largely unknown. This pathway also requires the cytosolic Hsp70 protein Ssa1, but whether Ssa1 associates with the translocation machinery to target protein substrates to the membrane is unclear. Here, we use a combined structural and biochemical approach to explore the role of Sec71-Sec72 subcomplex in post-translational protein translocation. To this end, we report a crystal structure of the Sec71-Sec72 complex, which revealed that Sec72 contains a tetratricopeptide repeat (TPR) domain that is anchored to the endoplasmic reticulum membrane by Sec71. We also determined the crystal structure of this TPR domain with a C-terminal peptide derived from Ssa1, which suggests how Sec72 interacts with full-length Ssa1. Surprisingly, Ssb1, a cytoplasmic Hsp70 that binds ribosome-associated nascent polypeptide chains, also binds to the TPR domain of Sec72, even though it lacks the TPR-binding C-terminal residues of Ssa1. We demonstrate that Ssb1 binds through its ATPase domain to the TPR domain, an interaction that leads to inhibition of nucleotide exchange. Taken together, our results suggest that translocation substrates can be recruited to the Sec71-Sec72 complex either post-translationally through Ssa1 or co-translationally through Ssb1.
机译:许多真核蛋白质的生物合成需要准确地靶向内质网膜并在其内跨位。酵母中的翻译后蛋白质易位既需要Sec61易位通道,又需要四种其他蛋白质的复合体:Sec63,Sec62,Sec71和Sec72。这些蛋白质的结构和功能很大程度上未知。该途径还需要胞质Hsp70蛋白Ssa1,但是尚不清楚Ssa1是否与易位机制相关联以将蛋白底物靶向膜。在这里,我们使用组合的结构和生化方法来探索Sec71-Sec72亚复合体在翻译后蛋白移位中的作用。为此,我们报告了Sec71-Sec72复合物的晶体结构,该结构揭示Sec72包含一个四三肽重复(TPR)域,该域通过Sec71锚定在内质网膜上。我们还确定了具有Ssa1衍生的C末端肽的TPR结构域的晶体结构,这表明Sec72如何与全长Ssa1相互作用。令人惊讶的是,Ssb1是一种结合核糖体相关新生多肽链的细胞质Hsp70,即使它缺乏Ssa1的TPR结合C末端残基,也可以与Sec72的TPR结构域结合。我们证明,Ssb1通过其ATPase域与TPR域结合,这种相互作用导致抑制核苷酸交换。两者合计,我们的结果表明,可以通过Ssa1翻译后或通过Ssb1共翻译将易位底物募集到Sec71-Sec72复合物中。

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