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Probing contacts of inhibitor locked in transition states in the catalytic triad of DENV2 type serine protease and its mutants by 1H, 19F and 15?N NMR spectroscopy

机译:1H,19F和15βNNMR光谱探测在Denv2型丝氨酸蛋白酶及其突变体催化三联催化三合会中抑制剂的抑制剂触点

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Detailed structural knowledge of enzyme-inhibitor complexes trapped in intermediate state is the key for a fundamental understanding of reaction mechanisms taking place in enzymes and is indispensable as a structure-guided drug design tool. Solution state NMR uniquely allows the study of active sites of enzymes in equilibrium between different tautomeric forms. In this study 1H, 19F and 15?N NMR spectroscopy has been used to probe the interaction contacts of inhibitors locked in transition states of the catalytic triad of a serine protease. It was demonstrated on the serotype II Dengue virus NS2B:NS3pro serine protease and its mutants, H51N and S135A, in complex with high-affinity ligands containing trifluoromethyl ketone (tfk) and boronic groups in the C-terminal of tetra-peptides. Monitoring 19F resonances, shows that only one of the two isomers of the tfk tetra-peptide binds with NS2B:NS3pro and that access to the bulk of the active site is limited. Moreover, there were no bound water found in proximity of the active site for any of the ligands manifesting in a favorable condition for formation of low barrier hydrogen bonds (LBHB) in the catalytic triad. Based on this data we were able to identify a locked conformation of the protein active site. The data also indicates that the different parts of the binding site most likely act independently of each other. Our reported findings increases the knowledge of the detailed function of the catalytic triad in serine proteases and could facilitate the development of rational structure based inhibitors that can selectively target the NS3 protease of Dengue type II (DENV2) virus. In addition the results shows the usefulness of probing active sites using 19F NMR spectroscopy.
机译:捕获中间状态的酶抑制剂复合物的详细结构知识是对酶中发生反应机制的基本理解的关键,是作为结构引导的药物设计工具不可或缺的。溶液态NMR唯一允许在不同互变异构形式之间的平衡中研究酶的活性位点。在该研究中,1H,19F和15?N NMR光谱已被用于探测抑制剂锁定在催化三合会的催化三合会的过渡状态中的相互作用触点。它在血清型II登革热病毒NS2B:NS3PRO丝氨酸蛋白酶及其突变体,H51n和S135a上进行了证明,其与含有三氟甲基酮(TFK)的高亲和力配体和四肽的C末端中的耐润态基团。监测19F的共振,表明TFK四肽的两个异构体中只有一个与NS2B:NS3PRO结合,并且对大部分活性位点的访问受到限制。此外,在活性位点的接近邻近存在的任何配体在催化三合会中形成低屏障氢键(LBHB)的任何配体,没有任何结合的水。基于该数据,我们能够识别蛋白质活性位点的锁定构象。数据还表明,绑定站点的不同部分最可能彼此独立行为。我们报告的发现增加了催化三合会在丝氨酸蛋白酶中的详细功能的知识,并且可以促进基于合理结构的抑制剂的发展,其可以选择性地靶向登革热II型(DENV2)病毒的NS3蛋白酶。此外,结果表明使用19F NMR光谱探测活性位点的有用性。

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