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Specific transmembrane segments are selectively delayed at the ER translocon during opsin biogenesis

机译:在视蛋白生物发生过程中,特定的跨膜节段在ER跨膜区被选择性地延迟

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A site-specific cross-linking approach was used to study the integration of TM (transmembrane) segments 4-7 of the polytopic membrane protein, opsin, at the ER (endoplasmic reticulum). We found that although TM4 exits the ER translocon rapidly, TM segments 5, 6 and 7 are all retained at the translocon until opsin biosynthesis is terminated. Furthermore, although artificial extension of the nascent chain is not sufficient to release the C-terminal region of opsin from the translocon, substitution of the native TM segment 7 with a more hydrophobic TM segment results in its rapid lateral exit into the lipid bilayer. We conclude that the intrinsic properties of a TM segment determine the timing of its membrane integration rather than its relative location within the polypeptide chain. A pronounced and prolonged association of opsin TM5 with the translocon-associated component PAT-10 was also observed, suggesting that PAT-10 may facilitate the assembly of distinct opsin subdomains during membrane integration. The results of the present study strongly support a model in which the ER translocon co-ordinates the integration of selected TM segments in response to the specific requirements of the precursor being synthesized.
机译:使用位点特异性的交联方法研究了多聚膜蛋白视蛋白在内质网的TM(跨膜)区段4-7的整合。我们发现,尽管TM4迅速退出ER转运子,TM段5、6和7都保留在转运子上,直到视蛋白生物合成终止。此外,尽管新生链的人为延伸不足以从视铁蛋白释放视蛋白的C末端区域,但是天然TM区段7被更疏水的TM区段取代导致其快速侧向进入脂质双层。我们得出结论,TM区段的内在性质决定了其膜整合的时机,而不是其在多肽链中的相对位置。还观察到视蛋白TM5与translocon相关组件PAT-10的明显和长时间的关联,这表明PAT-10可能有助于膜整合过程中不同视蛋白亚域的组装。本研究的结果有力地支持了一个模型,其中ER视铁蛋白响应所合成前体的特殊要求而协调所选TM段的整合。

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