首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Chemical modification of Bacillus thuringiensis Cry1Aa toxin single-cysteine mutants reveals the importance of domain I structural elements in the mechanism of pore formation.
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Chemical modification of Bacillus thuringiensis Cry1Aa toxin single-cysteine mutants reveals the importance of domain I structural elements in the mechanism of pore formation.

机译:苏云金芽孢杆菌Cry1Aa毒素单半胱氨酸突变体的化学修饰揭示了结构域I结构元件在孔形成机理中的重要性。

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摘要

Bacillus thuringiensis Cry toxins form pores in the apical membrane of insect larval midgut cells. To investigate their mechanism of membrane insertion, mutants in which cysteine replaced individual amino acids located within the pore-forming domain of Cry1Aa were chemically modified with sulfhydryl-specific reagents. The thiol group of cysteine was highly susceptible to oxidation and its reactivity was significantly increased when the toxins were purified under reducing conditions. Addition of a biotin group to the cysteine had little effect on the ability of the toxins to permeabilize Manduca sexta brush border membrane vesicles except for a slight reduction in activity for S252C and a large increase in activity for Y153C. The activity of Y153C was also significantly increased after modification by reagents that added an aromatic or a charged group to the cysteine. When permeability assays were performed in the presence of streptavidin, a large biotin-binding protein, the pore-forming activity of several mutants, including Y153C, where the altered residue is located within the hairpin comprising helices alpha4 and alpha5, or in adjacent loops, was significantly reduced. These results support the umbrella model of toxin insertion.
机译:苏云金芽孢杆菌的Cry毒素在昆虫幼虫中肠细胞的顶膜中形成孔。为了研究其膜插入的机制,用巯基特异性试剂对半胱氨酸替代位于Cry1Aa孔形成域内的单个氨基酸的突变体进行了化学修饰。当在还原条件下纯化毒素时,半胱氨酸的硫醇基极易氧化,其反应性显着提高。向半胱氨酸中添加生物素基团对毒素透化曼杜卡六边形刷缘膜囊泡的能力几乎没有影响,除了对S252C的活性略有降低和对Y153C的活性有较大的增加。通过在半胱氨酸中添加芳香族或带电基团的试剂进行修饰后,Y153C的活性也显着提高。当在链霉亲和素(一种大的生物素结合蛋白)存在下进行通透性测定时,包括Y153C在内的几种突变体的成孔活性,其中改变的残基位于包含螺旋α4和α5的发夹中或相邻环中,大大减少了。这些结果支持毒素插入伞模型。

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