首页> 外文期刊>Journal of Medicinal Chemistry >Utilization of nitrophenylphosphates and oxime-based ligation for the development of nanomolar affinity inhibitors of the Yersinia pestis outer protein H (YopH) phosphatase
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Utilization of nitrophenylphosphates and oxime-based ligation for the development of nanomolar affinity inhibitors of the Yersinia pestis outer protein H (YopH) phosphatase

机译:利用硝基苯基磷酸酯和肟基连接开发鼠疫耶尔森氏菌外蛋白H(YopH)磷酸酶的纳摩尔亲和力抑制剂

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Our current study reports the first K_M optimization of a library of nitrophenylphosphate-containing substrates for generating an inhibitor lead against the Yersinia pestis outer protein phosphatase (YopH). A high activity substrate identified by this method (K_M = 80 μM) was converted from a substrate into an inhibitor by replacement of its phosphate group with difluoromethylphosphonic acid and by attachment of an aminooxy handle for further structural optimization by oxime ligation. A cocrystal structure of this aminooxy-containing platform in complex with YopH allowed the identification of a conserved water molecule proximal to the aminooxy group that was subsequently employed for the design of furanyl-based oxime derivatives. By this process, a potent (IC_(50) = 190 nM) and nonpromiscuous inhibitor was developed with good YopH selectivity relative to a panel of phosphatases. The inhibitor showed significant inhibition of intracellular Y. pestis replication at a noncytotoxic concentration. The current work presents general approaches to PTP inhibitor development that may be useful beyond YopH.
机译:我们当前的研究报道了含硝基苯基磷酸酯的底物文库的第一个K_M优化,用于生成抗鼠疫耶尔森氏菌外部蛋白磷酸酶(YopH)的抑制剂。通过该方法鉴定的高活性底物(K_M = 80μM)通过将其磷酸基团替换为二氟甲基膦酸并通过连接氨氧基手柄以通过肟连接进一步优化结构,从而将底物从抑制剂转变为抑制剂。该含氨基氧基的平台与YopH配合使用的共晶体结构可鉴定出靠近氨基氧基的保守水分子,随后将其用于设计基于呋喃基的肟衍生物。通过该过程,开发了一种有效的(IC_(50)= 190 nM)和不混杂的抑制剂,相对于一组磷酸酶,它们具有良好的YopH选择性。该抑制剂在非细胞毒性浓度下显示出对胞内鼠疫耶尔森氏菌复制的显着抑制。当前的工作提出了开发PTP抑制剂的一般方法,这些方法可能超出YopH的范围。

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