Cai Shuowei, Kumar Raj, Singh Bal Ram
Department of Chemistry and Biochemistry, University of Massachusetts Dartmouth, Dartmouth, MA 02747, USA.
Botulinum Research Center, Institute of Advanced Sciences, Dartmouth, MA 02747, USA.
Microorganisms. 2021 Oct 23;9(11):2206. doi: 10.3390/microorganisms9112206.
Gram-positive bacteria are ancient organisms. Many bacteria, including Gram-positive bacteria, produce toxins to manipulate the host, leading to various diseases. While the targets of Gram-positive bacterial toxins are diverse, many of those toxins use a similar mechanism to invade host cells and exert their functions. Clostridial neurotoxins produced by and provide a classical example to illustrate the structure-function relationship of bacterial toxins. Here, we critically review the recent progress of the structure-function relationship of clostridial neurotoxins, including the diversity of the clostridial neurotoxins, the mode of actions, and the flexible structures required for the activation of toxins. The mechanism clostridial neurotoxins use for triggering their activity is shared with many other Gram-positive bacterial toxins, especially molten globule-type structures. This review also summarizes the implications of the molten globule-type flexible structures to other Gram-positive bacterial toxins. Understanding these highly dynamic flexible structures in solution and their role in the function of bacterial toxins not only fills in the missing link of the high-resolution structures from X-ray crystallography but also provides vital information for better designing antidotes against those toxins.
革兰氏阳性菌是古老的生物体。许多细菌,包括革兰氏阳性菌,都会产生毒素来操控宿主,从而引发各种疾病。虽然革兰氏阳性菌毒素的作用靶点多种多样,但其中许多毒素都采用类似的机制侵入宿主细胞并发挥其功能。由[具体名称1]和[具体名称2]产生的梭菌神经毒素就是一个典型例子,用以说明细菌毒素的结构-功能关系。在此,我们批判性地回顾了梭菌神经毒素结构-功能关系的最新进展,包括梭菌神经毒素的多样性、作用方式以及毒素激活所需的灵活结构。梭菌神经毒素触发其活性的机制与许多其他革兰氏阳性菌毒素相同,尤其是熔球型结构。本综述还总结了熔球型灵活结构对其他革兰氏阳性菌毒素的影响。了解这些溶液中高度动态的灵活结构及其在细菌毒素功能中的作用,不仅填补了X射线晶体学高分辨率结构缺失的环节,还为更好地设计针对这些毒素的解毒剂提供了重要信息。