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蛋白质转运所需配体诱导的Sec61p复合物寡聚环。

Oligomeric rings of the Sec61p complex induced by ligands required for protein translocation.

作者信息

Hanein D, Matlack K E, Jungnickel B, Plath K, Kalies K U, Miller K R, Rapoport T A, Akey C W

机构信息

Department of Biophysics, Boston University School of Medicine, Massachusetts 02218-2394, USA.

出版信息

Cell. 1996 Nov 15;87(4):721-32. doi: 10.1016/s0092-8674(00)81391-4.

Abstract

The heterotrimeric Sec61p complex is a major component of the protein-conducting channel of the endoplasmic reticulum (ER) membrane, associating with either ribosomes or the Sec62/63 complex to perform co- and posttranslational transport, respectively. We show by electron microscopy that purified mammalian and yeast Sec61p complexes in detergent form cylindrical oligomers with a diameter of approximately 85 A and a central pore of approximately 20 A. Each oligomer contains 3-4 heterotrimers. Similar ring structures are seen in reconstituted proteoliposomes and native membranes. Oligomer formation by the reconstituted Sec61p complex is stimulated by its association with ribosomes or the Sec62/63p complex. We propose that these cylindrical oligomers represent protein-conducting channels of the ER, formed by ligands specific for co- and posttranslational transport.

摘要

异源三聚体Sec61p复合物是内质网(ER)膜蛋白传导通道的主要成分,分别与核糖体或Sec62/63复合物结合,以进行共翻译和翻译后转运。我们通过电子显微镜显示,纯化的哺乳动物和酵母Sec61p复合物在去污剂中形成直径约85埃、中心孔约20埃的圆柱形寡聚体。每个寡聚体包含3-4个异源三聚体。在重构的蛋白脂质体和天然膜中也观察到类似的环状结构。重构的Sec61p复合物与核糖体或Sec62/63p复合物结合可刺激寡聚体形成。我们提出,这些圆柱形寡聚体代表内质网的蛋白传导通道,由共翻译和翻译后转运的特异性配体形成。

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