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磷脂辅助的蛋白质折叠:多跨膜蛋白乳糖通透酶构象成熟的后期步骤需要磷脂酰乙醇胺。

Phospholipid-assisted protein folding: phosphatidylethanolamine is required at a late step of the conformational maturation of the polytopic membrane protein lactose permease.

作者信息

Bogdanov M, Dowhan W

机构信息

Department of Biochemistry and Molecular Biology, University of Texas-Houston, Medical School, Houston, TX 77225, USA.

出版信息

EMBO J. 1998 Sep 15;17(18):5255-64. doi: 10.1093/emboj/17.18.5255.

Abstract

Previously we presented evidence that phosphatidylethanolamine (PE) acts as a molecular chaperone in the folding of the polytopic membrane protein lactose permease (LacY) of Escherichia coli. Here we provide more definitive evidence supporting the chaperone properties of PE. Membrane insertion of LacY prevents its irreversible aggregation, and PE participates in a late step of conformational maturation. The temporal requirement for PE was demonstrated in vitro using a coupled translation-membrane insertion assay that allowed the separation of membrane insertion from phospholipid-assisted folding. LacY was folded properly, as assessed by recognition with conformation-specific monoclonal antibodies, when synthesized in the presence of PE-containing inside-out membrane vesicles (IOVs) or in the presence of IOVs initially lacking PE but supplemented with PE synthesized in vitro either co- or post-translationally. The presence of IOVs lacking PE and containing anionic phospholipids or no addition of IOVs resulted in misfolded or aggregated LacY, respectively. Therefore, critical folding steps occur after membrane insertion dependent on the interaction of LacY with PE to prevent illicit interactions which lead to misfolding of LacY.

摘要

此前我们曾提出证据表明,磷脂酰乙醇胺(PE)在大肠杆菌多聚体膜蛋白乳糖通透酶(LacY)的折叠过程中充当分子伴侣。在此我们提供了更确凿的证据来支持PE的伴侣特性。LacY插入膜中可防止其不可逆聚集,且PE参与构象成熟的后期步骤。利用耦合翻译-膜插入试验在体外证明了对PE的时间需求,该试验可将膜插入与磷脂辅助折叠分离。当在含有内向外膜囊泡(IOV)的PE存在下合成,或在最初缺乏PE但在翻译时或翻译后补充体外合成的PE的IOV存在下合成时,通过用构象特异性单克隆抗体识别评估,LacY能正确折叠。缺乏PE且含有阴离子磷脂的IOV的存在或不添加IOV分别导致LacY错误折叠或聚集。因此,关键的折叠步骤发生在膜插入之后,这取决于LacY与PE的相互作用,以防止导致LacY错误折叠的非法相互作用。

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