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蜡样芽孢杆菌溶血素II孔道的特性取决于环境条件。

The properties of Bacillus cereus hemolysin II pores depend on environmental conditions.

作者信息

Andreeva Zhanna I, Nesterenko Vladimir F, Fomkina Maria G, Ternovsky Vadim I, Suzina Natalia E, Bakulina Anastasia Yu, Solonin Alexander S, Sineva Elena V

机构信息

Institute of Biochemistry and Physiology of Microorganisms, Russian Academy of Sciences, Pushchino, Moscow Region, 142290, Russia.

出版信息

Biochim Biophys Acta. 2007 Feb;1768(2):253-63. doi: 10.1016/j.bbamem.2006.11.004. Epub 2006 Nov 10.

Abstract

Hemolysin II (HlyII), one of several cytolytic proteins encoded by the opportunistic human pathogen Bacillus cereus, is a member of the family of oligomeric beta-barrel pore-forming toxins. This work has studied the pore-forming properties of HlyII using a number of biochemical and biophysical approaches. According to electron microscopy, HlyII protein interacts with liposomes to form ordered heptamer-like macromolecular assemblies with an inner pore diameter of 1.5-2 nm and an outer diameter of 6-8 nm. This is consistent with inner pore diameter obtained from osmotic protection assay. According to the 3D model obtained, seven HlyII monomers might form a pore, the outer size of which has been estimated to be slightly larger than by the other method, with an inner diameter changing from 1 to 4 nm along the channel length. The hemolysis rate has been found to be temperature-dependent, with an explicit lag at lower temperatures. Temperature jump experiments have indicated the pore structures formed at 37 degrees C and 4 degrees C to be different. The channels formed by HlyII are anion-selective in lipid bilayers and show a rising conductance as the salt concentration increases. The results presented show for the first time that at high salt concentration HlyII pores demonstrate voltage-induced gating observed at low negative potentials. Taken together we have found that the membrane-binding properties of hemolysin II as well as the properties of its pores strongly depend on environmental conditions. The study of the properties together with structural modeling allows a better understanding of channel functioning.

摘要

溶血素II(HlyII)是由机会致病菌蜡样芽孢杆菌编码的几种细胞溶解蛋白之一,属于寡聚β-桶状成孔毒素家族。这项工作使用了多种生化和生物物理方法研究了HlyII的成孔特性。根据电子显微镜观察,HlyII蛋白与脂质体相互作用,形成有序的七聚体样大分子组装体,其内径为1.5 - 2纳米,外径为6 - 8纳米。这与渗透保护试验得到的内径一致。根据获得的三维模型,七个HlyII单体可能形成一个孔,其外部尺寸估计比另一种方法略大,内径沿通道长度从1纳米变化到4纳米。已发现溶血率与温度有关,在较低温度下有明显的延迟。温度跃变实验表明在37℃和4℃形成的孔结构不同。HlyII在脂质双层中形成的通道具有阴离子选择性,并且随着盐浓度的增加电导上升。给出的结果首次表明,在高盐浓度下,HlyII孔在低负电位下表现出电压诱导门控。综合来看,我们发现溶血素II的膜结合特性及其孔的特性强烈依赖于环境条件。对这些特性的研究以及结构建模有助于更好地理解通道功能。

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