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Why Are Botulinum Neurotoxin-Producing Bacteria So Diverse and Botulinum Neurotoxins So Toxic?

机译:为什么产生肉毒杆菌神经毒素的细菌如此多样为什么肉毒杆菌神经毒素如此有毒?

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摘要

Botulinum neurotoxins (BoNTs) are the most lethal toxins among all bacterial, animal, plant and chemical poisonous compounds. Although a great effort has been made to understand their mode of action, some questions are still open. Why, and for what benefit, have environmental bacteria that accidentally interact with their host engineered so diverse and so specific toxins targeting one of the most specialized physiological processes, the neuroexocytosis of higher organisms? The extreme potency of BoNT does not result from only one hyperactive step, but in contrast to other potent lethal toxins, from multi-step activity. The cumulative effects of the different steps, each having a limited effect, make BoNTs the most potent lethal toxins. This is a unique mode of evolution of a toxic compound, the high potency of which results from multiple steps driven by unknown selection pressure, targeting one of the most critical physiological process of higher organisms.
机译:肉毒杆菌神经毒素(BoNT)是所有细菌,动物,植物和化学有毒化合物中最致命的毒素。尽管已作出很大的努力来了解他们的行动方式,但仍有一些问题尚待解决。为什么环境细菌偶然与宿主相互作用而产生了什么好处,目的是解决最特殊的生理过程之一,即高等生物的神经胞吐,从而设计出如此多样且如此特殊的毒素? BoNT的极强效力不仅来自一个过度活跃的步骤,而且与其他有效的致死毒素相反,它来自多步活动。不同步骤的累积作用(每个作用有限)使BoNT成为最有效的致命毒素。这是一种有毒化合物的独特进化方式,其高效率是由未知选择压力驱动的多个步骤导致的,针对的是高等生物最关键的生理过程之一。

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