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Activity inhibition and crystal polymorphism induced by active‐site metal swapping

机译:活动抑制和水晶多态性诱导金属交换,活跃的站点

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摘要

The Arenaviridae family is one of the two RNA viral families that encode a 3′–5′ exonuclease in their genome. An exonuclease domain is found in the Arenaviridae nucleoprotein and targets dsRNA specifically. This domain is directly involved in suppression of innate immunity in the host cell. Like most phosphate‐processing enzymes, it requires a divalent metal ion such as Mg 2+ (or Mn 2+ ) as a cofactor to catalyse nucleotide‐cleavage and nucleotide‐transfer reactions. On the other hand, calcium (Ca 2+ ) inhibits this enzymatic activity, in spite of the fact that Mg 2+ and Ca 2+ present comparable binding affinities and biological availabilities. Here, the molecular and structural effects of the replacement of magnesium by calcium and its inhibition mechanism for phosphodiester cleavage, an essential reaction in the viral process of innate immunity suppression, are studied. Biochemical data and high‐resolution structures of the Mopeia virus exonuclease domain complexed with each ion are reported for the first time. The consequences of the ion swap for the stability of the protein, the catalytic site and the functional role of a specific metal ion in enabling the catalytic cleavage of a dsRNA substrate are outlined.
机译:单链核糖家族的两个RNA病毒编码的家庭3 ' 5 '核酸外切酶他们的基因组。极的单链核糖核蛋白和目标具体来说。抑制宿主细胞的先天免疫。像大多数磷酸处理应承担的酶,它需要一个二价金属离子,如Mg 2 +(或锰催化2 +)作为辅助因子核苷酸的乳沟和核苷酸转移反应。抑制酶活性,尽管Mg 2 +和Ca 2 +可比约束力的亲和性和生物可用性。在这里,分子和结构的影响更换由钙和镁抑制磷酸二酯乳沟的机制,一个重要的反应在病毒的过程先天免疫抑制,进行了研究。生化数据和高分辨率的结构Mopeia病毒的核酸外切酶域复杂每个离子首次报告。的离子交换的后果稳定蛋白质的催化部位一个特定的金属离子的功能作用使催化dsRNA的乳沟底物了。

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