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首页> 外文期刊>Scientific reports. >Structural Investigation of Park’s Nucleotide on Bacterial Translocase MraY: Discovery of Unexpected MraY Inhibitors
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Structural Investigation of Park’s Nucleotide on Bacterial Translocase MraY: Discovery of Unexpected MraY Inhibitors

机译:公园核苷酸对细菌译团术语的结构调查:意外的MRAY抑制剂发现

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Systematic structural modifications of the muramic acid, peptide, and nucleotide moieties of Park's nucleotide were performed to investigate the substrate specificity of B. subtilis MraY (MraYBS). It was found that the simplest analogue of Park's nucleotide only bearing the first two amino acids, l-alanine-iso-d-glutamic acid, could function as a MraYBS substrate. Also, the acid group attached to the Cα of iso-d-glutamic acid was found to play an important role for substrate activity. Epimerization of the C4-hydroxyl group of muramic acid and modification at the 5-position of the uracil in Park's nucleotide were both found to dramatically impair their substrate activity. Unexpectedly, structural modifications on the uracil moiety changed the parent molecule from a substrate to an inhibitor, blocking the MraYBS translocation. One unoptimized inhibitor was found to have a Ki value of 4?±?1?μM against MraYBS, more potent than tunicamycins.
机译:进行苏米酸,肽和野生核苷酸核苷酸部分的系统结构修饰,以研究B.枯草芽孢杆菌MRAY(MRAYBS)的底物特异性。发现仅携带第一两个氨基酸的野生核苷酸的最简单类似物L-丙氨酸-ISO-D-谷氨酸可以用作MRAYBS底物。此外,发现附着于ISO-D-谷氨酸的Cα的酸基对底物活性起重要作用。在公园核苷酸尿嘧啶的5位蛋白酸的C4-羟基的截止解和修饰均发现了显着损害其基质活性。出乎意料地,尿嘧啶部分上的结构修饰将母体分子从衬底改为抑制剂,阻断MRAYBS易位。发现一个未优化的抑制剂的ki值为4?±1Ωσηλελμm,比mraybs更有效。

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