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Structural studies of streptococcus pyogenes streptolysin O provide insights into the early steps of membrane penetration

机译:化脓性链球菌链球菌溶血素O的结构研究可洞悉膜渗透的早期步骤

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Cholesterol-dependent cytolysins (CDCs) are a large family of bacterial toxins that exhibit a dependence on the presence of membrane cholesterol in forming large pores in cell membranes. Significant changes in the three-dimensional structure of these toxins are necessary to convert the soluble monomeric protein into a membrane pore. We have determined the crystal structure of the archetypical member of the CDC family, streptolysin O (SLO), a virulence factor from Streptococcus pyogenes. The overall fold is similar to previously reported CDC structures, although the C-terminal domain is in a different orientation with respect to the rest of the molecule. Surprisingly, a signature stretch of CDC sequence called the undecapeptide motif, a key region involved in membrane recognition, adopts a very different structure in SLO to that of the well-characterized CDC perfringolysin O (PFO), although the sequences in this region are identical. An analysis reveals that, in PFO, there are complementary interactions between the motif and the rest of domain 4 that are lost in SLO. Molecular dynamics simulations suggest that the loss of a salt bridge in SLO and a cation-pi interaction are determining factors in the extended conformation of the motif, which in turn appears to result in a greater flexibility of the neighboring L1 loop that houses a cholesterol-sensing motif. These differences may explain the differing abilities of SLO and PFO to efficiently penetrate target cell membranes in the first step of toxin insertion into the membrane.
机译:胆固醇依赖性溶血素(CDC)是一大类细菌毒素,它们在细胞膜上形成大孔时依赖于膜胆固醇的存在。这些毒素的三维结构必须发生重大变化,才能将可溶性单体蛋白转化为膜孔。我们已经确定了CDC家族原型成员链球菌溶血素O(SLO)的晶体结构,其是化脓性链球菌的致病因子。总体折叠与先前报道的CDC结构相似,尽管C末端结构域相对于其余分子处于不同的方向。出乎意料的是,CDC序列的标志性片段称为十一肽基序,这是参与膜识别的关键区域,在SLO中的结构与特征明确的CDC穿孔球菌溶血素O(PFO)的结构非常不同,尽管该区域中的序列相同。分析表明,在PFO中,基序与域4的其余部分之间存在互补的相互作用,这些相互作用在SLO中丢失。分子动力学模拟表明,SLO中盐桥的丢失和阳离子-pi相互作用是决定基序扩展构象的决定因素,这反过来又会导致相邻的L1环(具有胆固醇-感测主题。这些差异可以解释在毒素插入膜的第一步中,SLO和PFO有效渗透靶细胞膜的能力不同。

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