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肉毒神经毒素 F 型的底物识别和特异性的分子机制。

Molecular mechanisms of substrate recognition and specificity of botulinum neurotoxin serotype F.

机构信息

Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong.

出版信息

Biochem J. 2011 Jan 15;433(2):277-84. doi: 10.1042/BJ20101310.

Abstract

BoNTs (botulinum neurotoxins) are both deadly neurotoxins and natural toxins that are widely used in protein therapies to treat numerous neurological disorders of dystonia and spinal spasticity. Understanding the mechanism of action and substrate specificity of BoNTs is a prerequisite to develop antitoxin and novel BoNT-derived protein therapy. To date, there is a lack of detailed information with regard to how BoNTs recognize and hydrolyse the substrate VAMP-2 (vesicle-associated membrane protein 2), even though it is known to be cleaved by four of the seven BoNT serotypes, B, D, F, G and TeNT (tetanus neurotoxin). In the present study we dissected the molecular mechanisms of VAMP-2 recognition by BoNT serotype F for the first time. The initial substrate recognition was mediated through sequential binding of VAMP-2 to the B1, B2 and B3 pockets in LC/F (light chain of BoNT serotype F), which directed VAMP-2 to the active site of LC/F and stabilized the active site substrate recognition, where the P2, P1' and P2' sites of VAMP-2 were specifically recognized by the S2, S1' and S2' pockets of LC/F to promote substrate hydrolysis. The understanding of the molecular mechanisms of LC/F substrate recognition provides insights into the development of antitoxins and engineering novel BoNTs to optimize current therapy and extend therapeutic interventions.

摘要

BoNTs(肉毒神经毒素)既是致命的神经毒素,也是天然毒素,广泛应用于蛋白疗法,以治疗多种神经疾病,如肌张力障碍和脊髓痉挛。了解 BoNTs 的作用机制和底物特异性是开发抗毒素和新型 BoNT 衍生蛋白疗法的前提。迄今为止,尽管已知有四种 BoNT 血清型(B、D、F 和 G)和 TeNT(破伤风神经毒素)能够切割 VAMP-2(囊泡相关膜蛋白 2),但对于 BoNTs 如何识别和水解 VAMP-2 底物,我们仍然缺乏详细的信息。在本研究中,我们首次解析了 BoNT 血清型 F 识别 VAMP-2 的分子机制。底物的初始识别是通过 VAMP-2 与 LC/F(BoNT 血清型 F 的轻链)中的 B1、B2 和 B3 口袋的顺序结合来介导的,这将 VAMP-2 引导到 LC/F 的活性位点,并稳定活性位点的底物识别,其中 VAMP-2 的 P2、P1' 和 P2' 位点被 LC/F 的 S2、S1' 和 S2' 口袋特异性识别,以促进底物水解。对 LC/F 底物识别的分子机制的理解为抗毒素的开发和新型 BoNT 的工程设计提供了思路,以优化现有治疗方法并拓展治疗干预范围。

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