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肉毒杆菌毒素和破伤风神经毒素如何阻断神经递质释放。

How botulinum and tetanus neurotoxins block neurotransmitter release.

作者信息

Humeau Y, Doussau F, Grant N J, Poulain B

机构信息

Laboratoire de Neurobiologie Cellulaire, UPR 9009 du CNRS, Centre de Neurochimie, 5, rue Blaise-Pascal, 67084 cedex, Strasbourg, France.

出版信息

Biochimie. 2000 May;82(5):427-46. doi: 10.1016/s0300-9084(00)00216-9.

Abstract

Botulinum neurotoxins (BoNT, serotypes A-G) and tetanus neurotoxin (TeNT) are bacterial proteins that comprise a light chain (M(r) approximately 50) disulfide linked to a heavy chain (M(r) approximately 100). By inhibiting neurotransmitter release at distinct synapses, these toxins cause two severe neuroparalytic diseases, tetanus and botulism. The cellular and molecular modes of action of these toxins have almost been deciphered. After binding to specific membrane acceptors, BoNTs and TeNT are internalized via endocytosis into nerve terminals. Subsequently, their light chain (a zinc-dependent endopeptidase) is translocated into the cytosolic compartment where it cleaves one of three essential proteins involved in the exocytotic machinery: vesicle associated membrane protein (also termed synaptobrevin), syntaxin, and synaptosomal associated protein of 25 kDa. The aim of this review is to explain how the proteolytic attack at specific sites of the targets for BoNTs and TeNT induces perturbations of the fusogenic SNARE complex dynamics and how these alterations can account for the inhibition of spontaneous and evoked quantal neurotransmitter release by the neurotoxins.

摘要

肉毒杆菌神经毒素(BoNT,A - G 血清型)和破伤风神经毒素(TeNT)是细菌蛋白,由一条轻链(分子量约为 50)通过二硫键与一条重链(分子量约为 100)相连组成。通过抑制不同突触处的神经递质释放,这些毒素会引发两种严重的神经麻痹性疾病,即破伤风和肉毒中毒。这些毒素的细胞和分子作用模式几乎已被破解。与特定膜受体结合后,BoNTs 和 TeNT 通过内吞作用进入神经末梢。随后,它们的轻链(一种锌依赖性内肽酶)转移到胞质区室,在那里它会切割参与胞吐机制的三种必需蛋白质之一:囊泡相关膜蛋白(也称为突触小泡蛋白)、 syntaxin 和 25 kDa 的突触体相关蛋白。本综述的目的是解释 BoNTs 和 TeNT 对靶点特定部位的蛋白水解攻击如何引发融合性 SNARE 复合体动力学的扰动,以及这些改变如何导致神经毒素对自发和诱发的量子化神经递质释放的抑制。

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