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Substrate recognition strategy for botulinum neurotoxin serotype A

机译:肉毒杆菌神经毒素血清型A的底物识别策略

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Clostridal neurotoxins (CNTs) are the causative agents of the neuroparalytic diseases botulism and tetanus(1,2). CNTs impair neuronal exocytosis through specific proteolysis of essential proteins called SNAREs(3). SNARE assembly into a low-energy ternary complex is believed to catalyse membrane fusion, precipitating neurotransmitter release; this process is attenuated in response to SNARE proteolysis(4-7). Site-specific SNARE hydrolysis is catalysed by the CNT light chains, a unique group of zinc-dependent endopeptidases(3). The means by which a CNT properly identifies and cleaves its target SNARE has been a subject of much speculation; it is thought to use one or more regions of enzyme substrate interaction remote from the active site (exosites)(8-10). Here we report the first structure of a CNT endopeptidase in complex with its target SNARE at a resolution of 2.1 Angstrom: botulinum neurotoxin serotype A (BoNT/A) protease bound to human SNAP-25. The structure, together with enzyme kinetic data, reveals an array of exosites that determine substrate specificity. Substrate orientation is similar to that of the general zinc-dependent metalloprotease thermolysin(11). We observe significant structural changes near the toxin's catalytic pocket upon substrate binding, probably serving to render the protease competent for catalysis. The novel structures of the substrate-recognition exosites could be used for designing inhibitors specific to BoNT/A.
机译:梭菌神经毒素(CNTs)是神经麻痹性肉毒中毒和破伤风的病原体(1,2)。碳纳米管通过称为SNAREs的必需蛋白的特异性蛋白水解作用损害神经元胞吐作用(3)。 SNARE组装成低能三元复合物被认为催化膜融合,促进神经递质的释放。这个过程随着SNARE蛋白水解而减弱(4-7)。特定位置的SNARE水解是由CNT轻链催化的,CNT轻链是锌依赖性内肽酶的一个独特组(3)。 CNT正确识别并切割其目标SNARE的方法一直是许多猜测的主题;人们认为使用了一个或多个远离活性位点(异位点)的酶底物相互作用区域(8-10)。在这里,我们报告与目标SNARE复杂的CNT内肽酶的第一个结构,其分辨率为2.1埃:结合至人SNAP-25的肉毒杆菌神经毒素血清型A(BoNT / A)蛋白酶。该结构以及酶动力学数据揭示了确定基质特异性的一系列异岩。底物的取向与一般的锌依赖性金属蛋白酶嗜热菌素的取向相似(11)。我们观察到与底物结合后毒素催化口袋附近的显着结构变化,可能使蛋白酶具有催化作用。底物识别异岩的新颖结构可用于设计BoNT / A特异的抑制剂。

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