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A conformational switch controls hepatitis delta virus ribozyme catalysis

机译:构象转换控制肝炎三角洲病毒核酶催化

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Ribozymes enhance chemical reaction rates using many of the same catalytic strategies as protein enzymes. In the hepatitis delta virus (HDV) ribozyme, site-specific self-cleavage of the viral RNA phosphodiester backbone(1-3) requires both divalent cations and a cytidine nucleotide(4-6). General acid - base catalysis(7-12), substrate destabilization(1,13) and global and local conformational changes(14,15) have all been proposed to contribute to the ribozyme catalytic mechanism. Here we report ten crystal structures of the HDV ribozyme in its pre-cleaved state, showing that cytidine is positioned to activate the 2'-OH nucleophile in the precursor structure. This observation supports its proposed role as a general base in the reaction mechanism. Comparison of crystal structures of the ribozyme in the pre- and post-cleavage states reveals a significant conformational change in the RNA after cleavage and that a catalytically critical divalent metal ion from the active site is ejected. The HDV ribozyme has remarkable chemical similarity to protein ribonucleases and to zymogens for which conformational dynamics are integral to biological activity. This finding implies that RNA structural rearrangements control the reactivity of ribozymes and ribonucleoprotein enzymes.
机译:核酶使用许多与蛋白质酶相同的催化策略来提高化学反应速率。在肝炎三角洲病毒(HDV)核酶中,病毒RNA磷酸二酯主链(1-3)的位点特异性自我切割既需要二价阳离子又需要胞苷核苷酸(4-6)。一般的酸-碱催化作用(7-12),底物去稳定化作用(1,13)以及整体和局部构象变化(14,15)都被认为有助于核酶的催化作用。在这里,我们报告HDV核酶在其预切割状态的十个晶体结构,表明胞苷被定位为激活前体结构中的2'-OH亲核试剂。该观察结果支持其作为反应机理中一般基础的拟议作用。在切割前和切割后状态下核酶的晶体结构的比较揭示了切割后RNA中的显着构象变化,并且从活性位点排出了催化关键的二价金属离子。 HDV核酶与蛋白质的核糖核酸酶和酶原具有显着的化学相似性,其构象动力学是生物活性不可或缺的。该发现暗示RNA结构重排控制核酶和核糖核蛋白酶的反应性。

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