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金黄色葡萄球菌的α-溶血素:β桶状孔道形成毒素的原型。

alpha-Hemolysin from Staphylococcus aureus: an archetype of beta-barrel, channel-forming toxins.

作者信息

Gouaux E

机构信息

Department of Biochemistry and Molecular Biophysics, Columbia University, New York, New York 10032, USA.

出版信息

J Struct Biol. 1998;121(2):110-22. doi: 10.1006/jsbi.1998.3959.

Abstract

alpha-Hemolysin, secreted from Staphylococcus aureus as a water-soluble monomer of 33.2 kDa, assembles on cell membranes to form transmembrane, heptameric channels. The structure of the detergent-solubilized heptamer has been determined by X-ray crystallography to 1.9 A resolution. The heptamer has a mushroom-like shape and measures up to 100 A in diameter and 100 A in height. Spanning the length of the molecule and coincident with the molecular sevenfold axis is a water-filled channel that ranges in diameter from approximately 16 to approximately 46 A. A 14 strand antiparallel beta-barrel, in which two strands are contributed by each subunit, defines the transmembrane domain. On the exterior of the beta-barrel there is a hydrophobic belt approximately 30 A in width that provides a surface complementary to the nonpolar portion of the lipid bilayer. The extensive promoter-protomer interfaces are composed of both salt-links and hydrogen bonds, as well as hydrophobic interactions, and these contacts provide a molecular rationalization for the stability of the heptamer in SDS solutions up to 65 degrees C. With the structure of the heptamer in hand, we can better understand the mechanisms by which the assembled protein interacts with the membrane and can postulate mechanisms of assembly.

摘要

α-溶血素由金黄色葡萄球菌分泌,是一种分子量为33.2 kDa的水溶性单体,它在细胞膜上组装形成跨膜七聚体通道。通过X射线晶体学已确定去污剂增溶的七聚体结构,分辨率达1.9 Å。七聚体呈蘑菇状,直径达100 Å,高100 Å。贯穿分子全长并与分子七重轴重合的是一个充满水的通道,其直径约为16至约46 Å。一个由14条链组成的反平行β-桶,每个亚基贡献两条链,界定了跨膜结构域。在β-桶的外部有一条宽度约为30 Å的疏水带,它为脂质双层的非极性部分提供了互补表面。广泛的启动子-原体界面由盐键、氢键以及疏水相互作用组成,这些接触为七聚体在高达65摄氏度的SDS溶液中的稳定性提供了分子层面的合理解释。有了七聚体的结构,我们就能更好地理解组装后的蛋白质与膜相互作用的机制,并推测组装机制。

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