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Structural organization of the functional domains of Clostridium difficile toxins A and B

机译:艰难梭菌毒素A和B功能域的结构组织

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摘要

Clostridium difficile toxins A and B are members of an important class of virulence factors known as large clostridial toxins (LCTs). Toxin action involves four major steps: receptor-mediated endocytosis, translocation of a catalytic glucosyltransferase domain across the membrane, release of the enzymatic moiety by autoproteolytic processing, and a glucosyltransferase-dependent inactivation of Rho family proteins. We have imaged toxin A (TcdA) and toxin B (TcdB) holotoxins by negative stain electron microscopy to show that these molecules are similar in structure. We then determined a 3D structure for TcdA and mapped the organization of its functional domains. The molecule has a “pincher-like” head corresponding to the delivery domain and two tails, long and short, corresponding to the receptor-binding and glucosyltransferase domains, respectively. A second structure, obtained at the acidic pH of an endosome, reveals a significant structural change in the delivery and glucosyltransferase domains, and thus provides a framework for understanding the molecular mechanism of LCT cellular intoxication.
机译:艰难梭菌毒素A和B是一类重要的毒力因子,称为大梭菌毒素(LCT)。毒素作用涉及四个主要步骤:受体介导的内吞作用,催化性葡萄糖基转移酶结构域跨膜移位,通过自蛋白水解过程释放酶部分,以及Rho家族蛋白的依赖于葡萄糖基转移酶的失活。我们已经通过负染色电子显微镜对毒素A(TcdA)和毒素B(TcdB)全毒素成像,以显示这些分子的结构相似。然后,我们确定了TcdA的3D结构并映射了其功能域的组织。该分子具有对应于递送结构域的“ pincher-like”头部和分别对应于受体结合和葡糖基转移酶结构域的两个长而短的尾巴。在内体的酸性pH下获得的第二个结构揭示了传递结构域和葡萄糖基转移酶结构域的重大结构变化,从而为理解LCT细胞中毒的分子机制提供了框架。

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