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Computer-aided identification, synthesis, and biological evaluation of novel inhibitors for botulinum neurotoxin serotype A

机译:新型肉毒杆菌神经毒素血清型抑制剂的计算机辅助鉴定,合成和生物学评估

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Botulinum neurotoxins (BoNTs) are among the most potent biological toxin known to humans, and are classified as Category A bioterrorism agents by the Centers for Disease Control and prevention (CDC). There are seven known BoNT serotypes (A-G) which have been thus far identified in literature. BoNTs have been shown to block neurotransmitter release by cleaving proteins of the soluble NSF attachment protein receptor (SNARE) complex. Disruption of the SNARE complex precludes motor neuron failure which ultimately results in flaccid paralysis in humans and animals. Currently, there are no effective therapeutic treatments against the neurotoxin light chain (LC) after translocation into the cytosols of motor neurons. In this work, high-throughput in silico screening was employed to screen a library of commercially available compounds from ZINC database against BoNT/A-LC. Among the hit compounds from the in silico screening, two lead compounds were identified and found to have potent inhibitory activity against BoNT/A-LC in vitro, as well as in Neuro-2a cells. A few analogs of the lead compounds were synthesized and their potency examined. One of these analogs showed an enhanced activity than the lead compounds. (C) 2015 Elsevier Ltd. All rights reserved.
机译:肉毒杆菌神经毒素(BoNT)是人类已知的最有效的生物毒素之一,并被疾病控制与预防中心(CDC)归类为A类生物恐怖剂。迄今为止,已有七种已知的BoNT血清型(A-G)在文献中得到鉴定。 BoNT已显示可通过裂解可溶性NSF附着蛋白受体(SNARE)复合物的蛋白来阻断神经递质的释放。 SNARE复合物的破坏可防止运动神经元衰竭,最终导致人和动物的松弛性麻痹。目前,在转移到运动神经元的细胞质中后,没有针对神经毒素轻链(LC)的有效治疗方法。在这项工作中,采用了高通量计算机筛选技术,针对BoNT / A-LC从ZINC数据库中筛选了市售化合物库。在计算机筛选中发现的命中化合物中,鉴定出两种先导化合物,发现它们在体外以及在Neuro-2a细胞中对BoNT / A-LC具有有效的抑制活性。合成了几种先导化合物的类似物并检查了它们的效力。这些类似物之一显示出比先导化合物更高的活性。 (C)2015 Elsevier Ltd.保留所有权利。

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