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Membrane Insertion of the M13 Minor Coat Protein G3p Is Dependent on YidC and the SecAYEG Translocase

机译:M13次胶囊蛋白G3p的膜插入依赖于YIDC和Secayeg易译

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摘要

The minor coat protein G3p of bacteriophage M13 is the key component for the host interaction of this virus and binds to Escherichia coli at the tip of the F pili. As we show here, during the biosynthesis of G3p as a preprotein, the signal sequence interacts primarily with SecY, whereas the hydrophobic anchor sequence at the C-terminus interacts with YidC. Using arrested nascent chains and thiol crosslinking, we show here that the ribosome-exposed signal sequence is first contacted by SecY but not by YidC, suggesting that only SecYEG is involved at this early stage. The protein has a large periplasmic domain, a hydrophobic anchor sequence of 21 residues and a short C-terminal tail that remains in the cytoplasm. During the later synthesis of the entire G3p, the residues 387, 389 and 392 in anchor domain contact YidC in its hydrophobic slide to hold translocation of the C-terminal tail. Finally, the protein is processed by leader peptidase and assembled into new progeny phage particles that are extruded out of the cell.
机译:噬菌体M13的小外壳蛋白G3p是该病毒的宿主相互作用的关键组分,并且在F皮尖处与大肠杆菌结合。如我们在此显示在这里,在G3P作为预蛋白质的生物合成期间,信号序列主要用SECY相互作用,而C-末端的疏水锚序列与YIDC相互作用。使用被捕的新生链和硫醇交联,我们在这里展示了核糖体暴露的信号序列首先通过SECY而不是由YIDC接触,表明只有SEDEG涉及这个早期阶段。蛋白质具有大的周质结构域,疏水锚定序列为21个残基和短的C末端尾部,残留在细胞质中。在整个G3P的后期合成期间,锚定域中的残基387,389和392在其疏水滑块中触点YIDC以保持C末端尾部的易位。最后,通过领导肽酶处理蛋白质并组装成被挤出的新的后代噬菌体颗粒。

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