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葡萄球菌α-溶血素的结构,一种七聚体跨膜孔道。

Structure of staphylococcal alpha-hemolysin, a heptameric transmembrane pore.

作者信息

Song L, Hobaugh M R, Shustak C, Cheley S, Bayley H, Gouaux J E

机构信息

Department of Biochemistry, University of Chicago, 920 East 58 Street, Chicago, IL 60637, USA.

出版信息

Science. 1996 Dec 13;274(5294):1859-66. doi: 10.1126/science.274.5294.1859.

Abstract

The structure of the Staphylococcus aureus alpha-hemolysin pore has been determined to 1.9 A resolution. Contained within the mushroom-shaped homo-oligomeric heptamer is a solvent-filled channel, 100 A in length, that runs along the sevenfold axis and ranges from 14 A to 46 A in diameter. The lytic, transmembrane domain comprises the lower half of a 14-strand antiparallel beta barrel, to which each protomer contributes two beta strands, each 65 A long. The interior of the beta barrel is primarily hydrophilic, and the exterior has a hydrophobic belt 28 A wide. The structure proves the heptameric subunit stoichiometry of the alpha-hemolysin oligomer, shows that a glycine-rich and solvent-exposed region of a water-soluble protein can self-assemble to form a transmembrane pore of defined structure, and provides insight into the principles of membrane interaction and transport activity of beta barrel pore-forming toxins.

摘要

金黄色葡萄球菌α-溶血素孔的结构已确定至1.9埃分辨率。蘑菇状同型寡聚七聚体包含一个充满溶剂的通道,长度为100埃,沿七重轴延伸,直径从14埃到46埃不等。裂解性跨膜结构域由一个14链反平行β桶的下半部分组成,每个原体贡献两条β链,每条β链长65埃。β桶内部主要是亲水的,外部有一条28埃宽的疏水带。该结构证明了α-溶血素寡聚体的七聚体亚基化学计量,表明水溶性蛋白质富含甘氨酸且暴露于溶剂的区域可自组装形成具有确定结构的跨膜孔,并为β桶成孔毒素的膜相互作用和转运活性原理提供了见解。

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