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疏水性边缘跨膜螺旋的膜插入取决于序列环境。

Membrane insertion of marginally hydrophobic transmembrane helices depends on sequence context.

机构信息

Center for Biomembrane Research, Department of Biochemistry and Biophysics, Stockholm University, SE-106 91 Stockholm, Sweden.

出版信息

J Mol Biol. 2010 Feb 12;396(1):221-9. doi: 10.1016/j.jmb.2009.11.036. Epub 2009 Nov 18.

Abstract

In mammalian cells, most integral membrane proteins are initially inserted into the endoplasmic reticulum membrane by the so-called Sec61 translocon. However, recent predictions suggest that many transmembrane helices (TMHs) in multispanning membrane proteins are not sufficiently hydrophobic to be recognized as such by the translocon. In this study, we have screened 16 marginally hydrophobic TMHs from membrane proteins of known three-dimensional structure. Indeed, most of these TMHs do not insert efficiently into the endoplasmic reticulum membrane by themselves. To test if loops or TMHs immediately upstream or downstream of a marginally hydrophobic helix might influence the insertion efficiency, insertion of marginally hydrophobic helices was also studied in the presence of their neighboring loops and helices. The results show that flanking loops and nearest-neighbor TMHs are sufficient to ensure the insertion of many marginally hydrophobic helices. However, for at least two of the marginally hydrophobic helices, the local interactions are not enough, indicating that post-insertional rearrangements are involved in the folding of these proteins.

摘要

在哺乳动物细胞中,大多数整合膜蛋白最初是由所谓的 Sec61 转运蛋白插入内质网膜中的。然而,最近的预测表明,许多多跨膜螺旋(TMHs)在多跨膜蛋白中并不具有足够的疏水性,因此不能被转运蛋白识别。在这项研究中,我们从已知三维结构的膜蛋白中筛选了 16 个边缘疏水性 TMHs。事实上,这些 TMHs 中的大多数本身并不能有效地插入内质网膜中。为了测试边缘疏水性螺旋上下游的环或 TMHs 是否会影响插入效率,我们还在存在相邻环和螺旋的情况下研究了边缘疏水性螺旋的插入。结果表明,侧翼环和最近的 TMH 足以确保许多边缘疏水性螺旋的插入。然而,对于至少两个边缘疏水性螺旋,局部相互作用还不够,这表明这些蛋白质的折叠涉及插入后的重排。

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