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Structural effects of nucleobase variations at key active site residue Ade38 in the hairpin ribozyme.

机译:发夹状核酶中关键活性位点残基Ade38的碱基变化的结构效应。

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The hairpin ribozyme requires functional groups from Ade38 to achieve efficient bond cleavage or ligation. To identify molecular features that contribute to catalysis, structures of position 38 base variants 2,6-diaminopurine (DAP), 2-aminopurine (AP), cytosine (Cyt), and guanine (Gua) were determined between 2.2 and 2.8 A resolution. For each variant, two substrate modifications were compared: (1) a 2'-O-methyl-substituent at Ade-1 was used in lieu of the nucleophile to mimic the precatalytic state, and (2) a 3'-deoxy-2',5'-phosphodiester linkage between Ade-1 and Gua+1 was used to mimic a reaction-intermediate conformation. While the global fold of each variant remained intact, the results revealed the importance of Ade38 N1 and N6 groups. Absence of N6 resulting from AP38 coincided with failure to localize the precatalytic scissile phosphate. Cyt38 severely impaired catalysis in a prior study, and its structures here indicated an anti base conformation that sequesters the imino moiety from the scissile bond. Gua38 was shown to be even more deleterious to activity. Although the precatalytic structure was nominally affected, the reaction-intermediate conformation indicated a severe electrostatic clash between the Gua38 keto oxygen and the pro-Rp oxygen of the scissile bond. Overall, position 38 modifications solved in the presence of 2'-OMe Ade-1 deviated from in-line geometry, whereas variants with a 2',5' linkage exhibited S-turn destabilization, as well as base conformational changes from syn to anti. These findings demonstrate the importance of the Ade38 Watson-Crick face in attaining a reaction-intermediate state and the sensitivity of the RNA fold to restructuring when electrostatic and shape features fail to complement.
机译:发夹状核酶需要来自Ade38的官能团才能实现有效的键裂解或连接。为了鉴定有助于催化的分子特征,在2.2和2.8 A分辨率之间确定了38位碱基的2,6-二氨基嘌呤(DAP),2-氨基嘌呤(AP),胞嘧啶(Cyt)和鸟嘌呤(Gua)的结构。对于每种变体,比较了两种底物修饰:(1)使用Ade-1处的2'-O-甲基取代基代替亲核试剂来模拟预催化状态,以及(2)3'-脱氧-2 Ade-1和Gua + 1之间的',5'-磷酸二酯键用于模拟反应中间构象。虽然每个变体的全球折叠保持完整,但结果显示了Ade38 N1和N6组的重要性。由AP38引起的N6的缺乏与定位前催化裂变磷酸盐的失败相吻合。在先前的研究中,Cyt38严重损害了催化作用,其结构在此处显示出一种抗碱基构象,该构象将亚氨基部分从易裂键中隔离出来。 Gua38被证明对活动更有害。尽管名义上影响了前催化结构,但反应中间体构象表明Gua38酮氧和易裂键的Pro-Rp氧之间存在严重的静电碰撞。总体而言,位置38修饰在2'-OMe Ade-1存在偏离直列几何的情况下得以解决,而具有2',5'连锁的变体则表现出S-turn不稳定,以及碱基构象从syn变为anti 。这些发现证明了Ade38 Watson-Crick面部在获得反应中间状态时的重要性,以及当静电和形状特征无法互补时RNA折叠对重组的敏感性。

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