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Nucleoside Monophosphate Complex Structures of the Endonuclease Domain from the Influenza Virus Polymerase PA Subunit Reveal the Substrate Binding Site inside the Catalytic Center

机译:流感病毒聚合酶PA亚基的核酸内切酶域的核苷单磷酸酯复杂结构揭示了催化中心内的底物结合位点

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摘要

Highly pathogenic influenza virus strains currently in circulation pose a significant risk of a global pandemic. Following the reported crystal structure of the endonuclease domain from the avian influenza virus polymerase PA subunit, here we report the results of a systematic X-ray crystallographic analysis of its complex with adenosine, uridine, and thymidine nucleoside monophosphates (NMPs). Electron density corresponding to the monophosphate moiety of each nucleotide was apparent in each NMP complex and bound to the catalytic metal. A hydrophobic site was found to contribute to nucleoside binding. The NMP complex structures should represent the conformation of the bound product after nuclease cleavage. Moreover, one solvent molecule was found to occupy an equivalent position to the second reported Mn2+ ion, where it mediates the interaction between bound NMPs and the N-terminal PA domain in the presence of the Mg2+ ion. The results presented here indicate a possible cleavage mechanism and identify a distinct nucleotide binding pocket. The identification of this binding pocket opens a new avenue for anti-influenza drug discovery, targeting the cap-dependent endonuclease, in response to the worldwide threat of influenza.
机译:当前正在流行的高致病性流感病毒株构成了全球大流行的重大风险。继报道的禽流感病毒聚合酶PA亚基核酸内切酶结构域的晶体结构之后,我们在此报告了其与腺苷,尿苷和胸苷核苷单磷酸(NMPs)形成的复合物的系统X射线晶体学分析结果。与每个核苷酸的单磷酸酯部分相对应的电子密度在每个NMP络合物中均很明显,并与催化金属结合。发现疏水位点有助于核苷结合。 NMP复合物结构应代表核酸酶切割后结合产物的构象。此外,发现一个溶剂分子占据与第二个报告的Mn 2 + 离子相同的位置,在存在Mg <1的情况下它介导结合的NMP和N端PA域之间的相互作用。 sup> 2 + 离子。此处显示的结果表明了可能的裂解机制,并鉴定了不同的核苷酸结合口袋。该结合口袋的鉴定为针对流感病毒全球威胁的靶向帽依赖性核酸内切酶的抗流感药物发现开辟了新途径。

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