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Identification and Biochemical Characterization of Small-Molecule Inhibitors of Clostridium botulinum Neurotoxin Serotype A▿ §

机译:肉毒梭菌神经毒素血清型A▿的小分子抑制剂的鉴定和生化特性

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摘要

An integrated strategy that combined in silico screening and tiered biochemical assays (enzymatic, in vitro, and ex vivo) was used to identify and characterize effective small-molecule inhibitors of Clostridium botulinum neurotoxin serotype A (BoNT/A). Virtual screening was initially performed by computationally docking compounds of the National Cancer Institute (NCI) database into the active site of BoNT/A light chain (LC). A total of 100 high-scoring compounds were evaluated in a high-performance liquid chromatography (HPLC)-based protease assay using recombinant full-length BoNT/A LC. Seven compounds that significantly inhibited the BoNT/A protease activity were selected. Database search queries of the best candidate hit [7-((4-nitro-anilino)(phenyl)methyl)-8-quinolinol (NSC 1010)] were performed to mine its nontoxic analogs. Fifty-five analogs of NSC 1010 were synthesized and examined by the HPLC-based assay. Of these, five quinolinol derivatives that potently inhibited both full-length BoNT/A LC and truncated BoNT/A LC (residues 1 to 425) were selected for further inhibition studies in neuroblastoma (N2a) cell-based and tissue-based mouse phrenic nerve hemidiaphragm assays. Consistent with enzymatic assays, in vitro and ex vivo studies revealed that these five quinolinol-based analogs effectively neutralized BoNT/A toxicity, with CB 7969312 exhibiting ex vivo protection at 0.5 μM. To date, this is the most potent BoNT/A small-molecule inhibitor that showed activity in an ex vivo assay. The reduced toxicity and high potency demonstrated by these five compounds at the biochemical, cellular, and tissue levels are distinctive among the BoNT/A small-molecule inhibitors reported thus far. This study demonstrates the utility of a multidisciplinary approach (in silico screening coupled with biochemical testing) for identifying promising small-molecule BoNT/A inhibitors.
机译:结合计算机筛选和分层生化分析(酶促,体外和离体)的综合策略,用于鉴定和表征肉毒梭菌神经毒素血清型A(BoNT / A)的有效小分子抑制剂。虚拟筛选最初是通过将美国国家癌症研究所(NCI)数据库的化合物对接至BoNT / A轻链(LC)的活性位点进行的。使用重组全长BoNT / A LC在基于高效液相色谱(HPLC)的蛋白酶测定中评估了总共100个高分化合物。选择了七个显着抑制BoNT / A蛋白酶活性的化合物。进行数据库搜索,搜索最佳候选化合物[7-((4-硝基-苯胺基)(苯基)甲基)-8-喹啉醇(NSC 1010)],以挖掘其无毒类似物。合成了五十五种NSC 1010的类似物,并通过基于HPLC的分析进行了检查。其中,选择了五种有效抑制全长BoNT / A LC和截短的BoNT / A LC(残基1至425)的喹啉醇衍生物,用于基于神经母细胞瘤(N2a)细胞和组织的小鼠神经的进一步抑制研究。半ph检测。与酶促测定一致,体外和离体研究表明,这五种基于喹啉醇的类似物可有效中和BoNT / A毒性,CB 7969312在0.5μM时具有离体保护作用。迄今为止,这是最有效的BoNT / A小分子抑制剂,在离体试验中显示出活性。这五个化合物在生化,细胞和组织水平上所显示出的降低的毒性和高效力在迄今为止报道的BoNT / A小分子抑制剂中是很明显的。这项研究证明了多学科方法(计算机筛选与生化测试结合)在鉴定有希望的小分子BoNT / A抑制剂中的实用性。

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