TRAM1蛋白可能通过调节sec61通道侧门附近的磷脂双分子层来支持内质网蛋白的输入。

Marie-Christine Klein, Monika Lerner, Duy Nguyen, Stefan Pfeffer, Johanna Dudek, Friedrich Förster, Volkhard Helms, Sven Lang, Richard Zimmermann
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引用次数: 12

摘要

在哺乳动物细胞中,三分之一的多肽通过sec61通道进入或穿过er膜。虽然sec61复合物促进所有具有氨基末端信号肽(SP)或SP等效跨膜螺旋(TMH)的多肽的运输,但提出了易位链相关膜蛋白(现在称为TRAM1)支持一部分前体的运输。为了确定TRAM1底物特异性的可能决定因素,我们使用定量无标记蛋白质组学分析HeLa细胞中TRAM1耗尽后细胞蛋白丰度的变化,系统地鉴定了TRAM1依赖性前体。与之前在TRAP耗尽后的分析相比,对TRAM1客户的SP和TMH分析没有揭示任何可以解释其假定的底物特异性的显著特征。为了进一步研究TRAM1的机制,我们在HeLa细胞中去除TRAM1后进行了活细胞钙成像。与之前的分析相比,TRAP缺失后,TRAM1缺失不影响内质网钙渗漏。因此,TRAM1似乎不作为SP-或tmh受体在er膜的细胞质表面,似乎不影响sec61通道的开放概率。它更可能在蛋白质转运中发挥支持作用,例如使磷脂双分子层有利于接受SP和TMH在sec61通道的侧门附近。缩写:ER,内质网;OST, oligosaccharyltransferase;RAMP,核糖体相关膜蛋白;SP,信号肽;SR, SRP-receptor;SRP:信号识别粒子;TMH,信号肽等效跨膜螺旋;TRAM,易位链相关膜蛋白;转座子相关蛋白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

TRAM1 protein may support ER protein import by modulating the phospholipid bilayer near the lateral gate of the Sec61-channel.

TRAM1 protein may support ER protein import by modulating the phospholipid bilayer near the lateral gate of the Sec61-channel.

TRAM1 protein may support ER protein import by modulating the phospholipid bilayer near the lateral gate of the Sec61-channel.

TRAM1 protein may support ER protein import by modulating the phospholipid bilayer near the lateral gate of the Sec61-channel.

In mammalian cells, one-third of all polypeptides is transported into or through the ER-membrane via the Sec61-channel. While the Sec61-complex facilitates the transport of all polypeptides with amino-terminal signal peptides (SP) or SP-equivalent transmembrane helices (TMH), the translocating chain-associated membrane protein (now termed TRAM1) was proposed to support transport of a subset of precursors. To identify possible determinants of TRAM1 substrate specificity, we systematically identified TRAM1-dependent precursors by analyzing cellular protein abundance changes upon TRAM1 depletion in HeLa cells using quantitative label-free proteomics. In contrast to previous analysis after TRAP depletion, SP and TMH analysis of TRAM1 clients did not reveal any distinguishing features that could explain its putative substrate specificity. To further address the TRAM1 mechanism, live-cell calcium imaging was carried out after TRAM1 depletion in HeLa cells. In additional contrast to previous analysis after TRAP depletion, TRAM1 depletion did not affect calcium leakage from the ER. Thus, TRAM1 does not appear to act as SP- or TMH-receptor on the ER-membrane's cytosolic face and does not appear to affect the open probability of the Sec61-channel. It may rather play a supportive role in protein transport, such as making the phospholipid bilayer conducive for accepting SP and TMH in the vicinity of the lateral gate of the Sec61-channel.Abbreviations: ER, endoplasmic reticulum; OST, oligosaccharyltransferase; RAMP, ribosome-associated membrane protein; SP, signal peptide; SR, SRP-receptor; SRP, signal recognition particle; TMH, signal peptide-equivalent transmembrane helix; TRAM, translocating chain-associated membrane protein; TRAP, translocon-associated protein.

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