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Two translocating hydrophilic segments of a nascent chain span the ER membrane during multispanning protein topogenesis

机译:多跨蛋白拓扑发生过程中新生链的两个易位亲水链段跨过ER膜

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摘要

During protein integration into the endoplasmic reticulum, the N-terminal domain preceding the type I signal-anchor sequence is translocated through a translocon. By fusing a streptavidin-binding peptide tag to the N terminus, we created integration intermediates of multispanning membrane proteins. In a cell-free system, N-terminal domain (N-domain) translocation was arrested by streptavidin and resumed by biotin. Even when N-domain translocation was arrested, the second hydrophobic segment mediated translocation of the downstream hydrophilic segment. In one of the defined intermediates, two hydrophilic segments and two hydrophobic segments formed a transmembrane disposition in a productive state. Both of the translocating hydrophilic segments were crosslinked with a translocon subunit, Sec61α. We conclude that two translocating hydrophilic segment in a single membrane protein can span the membrane during multispanning topogenesis flanking the translocon. Furthermore, even after six successive hydrophobic segments entered the translocon, N-domain translocation could be induced to restart from an arrested state. These observations indicate the remarkably flexible nature of the translocon.
机译:在蛋白质整合入内质网的过程中,位于I型信号锚序列之前的N末端结构域通过转运子转位。通过将链霉亲和素结合肽标签融合到N端,我们创建了跨膜蛋白的整合中间体。在无细胞系统中,N末端域(N域)易位被链霉亲和素阻滞,并被生物素恢复。即使当N域易位被阻止时,第二疏水性片段也介导了下游亲水性片段的易位。在所定义的中间体之一中,两个亲水性链段和两个疏水性链段以生产状态形成跨膜布置。两个易位的亲水链段都与一个易位子亚基Sec61α交联。我们得出的结论是,单个膜蛋白中的两个易位亲水片段可以跨接跨膜介导的跨跨拓扑拓扑过程跨膜。此外,即使在六个连续的疏水链段进入易位子之后,也可以诱导N域易位从停滞状态重新开始。这些观察表明,转座子具有显着的柔性。

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