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苏云金芽孢杆菌溶细胞毒素与磷脂双层相关的生化特性

Biochemical characterization of Bacillus thuringiensis cytolytic toxins in association with a phospholipid bilayer.

作者信息

Du J, Knowles B H, Li J, Ellar D J

机构信息

Department of Zoology, University of Cambridge, UK.

出版信息

Biochem J. 1999 Feb 15;338 ( Pt 1)(Pt 1):185-93.

Abstract

The interaction of two Bacillus thuringiensis cytolytic toxins, CytA and CytB, with a phospholipid bilayer and their structure in the membrane-bound state were investigated by proteolysis using phospholipid vesicles as a model system. A toxin conformational change upon membrane binding was detected by comparing the proteolytic profile of membrane-bound toxin and saline-solubilized toxin. When membrane-bound toxin was exposed to protease K or trypsin, novel cleavage sites were found between the alpha-helical N-terminal half and beta-strand C-terminal half of the structure at K154 and N155 in CytA and at I150 and G141 in CytB. N-terminal sequencing of membrane-protected fragments showed that the C-terminal half of the toxin structure comprising mainly beta-strands was inserted into the membrane, whereas the N-terminal half comprising mainly alpha-helices was exposed on the outside of the liposomes and could be removed when liposomes with bound toxin were washed extensively after proteolysis. The C-termini of the membrane-inserted proteolytic fragments were also located by a combination of N-terminal sequencing and measurement of the molecular masses of the fragments by electrospray MS. Using a liposome glucose-release assay, the membrane-inserted structure was seen to retain its function as a membrane pore even after removal of exposed N-terminal segments by proteolysis. These data strongly suggest that the pores for glucose release are assembled from the three major beta-strands (beta-5, beta-6 and beta-7) in the C-terminal half of the toxin.

摘要

以磷脂囊泡作为模型系统,通过蛋白水解作用研究了两种苏云金芽孢杆菌溶细胞毒素CytA和CytB与磷脂双层的相互作用及其膜结合状态下的结构。通过比较膜结合毒素和盐增溶毒素的蛋白水解图谱,检测到毒素在膜结合时的构象变化。当膜结合毒素暴露于蛋白酶K或胰蛋白酶时,在CytA的K154和N155以及CytB的I150和G141处,毒素结构的α螺旋N端半部分和β链C端半部分之间发现了新的切割位点。对膜保护片段进行N端测序表明,毒素结构中主要由β链组成的C端半部分插入到膜中,而主要由α螺旋组成的N端半部分暴露在脂质体外部,并且在蛋白水解后对结合毒素的脂质体进行广泛洗涤时可以被去除。通过N端测序和电喷雾质谱法测量片段分子量相结合的方法,也确定了膜插入蛋白水解片段的C端。使用脂质体葡萄糖释放试验,即使在通过蛋白水解去除暴露的N端片段后,膜插入结构仍被视为保留其作为膜孔的功能。这些数据有力地表明,葡萄糖释放孔是由毒素C端半部分的三个主要β链(β-5、β-6和β-7)组装而成的。

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