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膜蛋白腔域的膜转位由下游跨膜序列驱动。

Membrane translocation of lumenal domains of membrane proteins powered by downstream transmembrane sequences.

机构信息

Graduate School of Life Science, University of Hyogo, 3-2-1 Kouto, Kamigori, Ako-gun, Hyogo 678-1297, Japan.

出版信息

Mol Biol Cell. 2013 Oct;24(19):3123-32. doi: 10.1091/mbc.E13-04-0210. Epub 2013 Aug 7.

Abstract

Translocation of the N-terminus of a type I signal anchor (SA-I) sequence across the endoplasmic reticulum membrane can be arrested by tagging with a streptavidin-binding peptide tag (SBP tag) and trapping by streptavidin. In the present study, we first examine the affinity required for the translocation arrest. When the SBP tag is serially truncated, the ability for arrest gradually decreases. Surface plasmon resonance analysis shows that an interaction as strong as 10(-8) M or a smaller dissociation constant is required for trapping the topogenesis of a natural SA-I sequence. Such truncated tags, however, become effective by mutating the SA-I sequence, suggesting that the translocation motivation is considerably influenced by the properties of the SA-I sequence. In addition, we introduce the SBP tag into lumenal loops of a multispanning membrane protein, human erythrocyte band 3. Among the tagged loops between transmembrane 1 (TM1) and TM8, three loops are trapped by cytosolic streptavidin. These loops are followed by TM sequences possessing topogenic properties, like the SA-I sequence, and translocation of one loop is diminished by insertion of a proline into the following TM sequence. These findings suggest that the translocation of lumenal loops by SA-I-like TM sequences has a crucial role in topogenesis of multispanning membrane proteins.

摘要

I 型信号锚(SA-I)序列的 N 端穿过内质网膜的易位可以通过与链霉亲和素结合肽标签(SBP 标签)标记并被链霉亲和素捕获而被阻断。在本研究中,我们首先检查了易位阻断所需的亲和力。当 SBP 标签被串联截断时,阻断能力逐渐降低。表面等离子体共振分析表明,需要 10^(-8) M 或更小的解离常数的相互作用来捕获天然 SA-I 序列的拓扑发生。然而,通过突变 SA-I 序列,这些截断的标签变得有效,这表明易位动机受到 SA-I 序列特性的极大影响。此外,我们将 SBP 标签引入人红细胞带 3 的多跨膜蛋白的腔环中。在跨膜 1(TM1)和 TM8 之间标记的环中,三个环被细胞质中的链霉亲和素捕获。这些环后面是具有拓扑性质的 TM 序列,如 SA-I 序列,并且将一个环插入到后续的 TM 序列中会减少一个环的易位。这些发现表明,SA-I 样 TM 序列的腔环易位在多跨膜蛋白的拓扑发生中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0540/3784385/b6d952eacd9a/3123fig1.jpg

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