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Structure and two-metal mechanism of a eukaryal nick-sealing RNA ligase

机译:真核缺口密封RNA连接酶的结构和双金属机理

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摘要

ATP-dependent RNA ligases are agents of RNA repair that join 3′-OH and 5′-PO4 RNA ends. Naegleria gruberi RNA ligase (NgrRnl) exemplifies a family of RNA nick-sealing enzymes found in bacteria, viruses, and eukarya. Crystal structures of NgrRnl at three discrete steps along the reaction pathway—covalent ligase-(lysyl-Nζ)–AMP•Mn2+ intermediate; ligase•ATP•(Mn2+)2 Michaelis complex; and ligase•Mn2+ complex—highlight a two-metal mechanism of nucleotidyl transfer, whereby (i) an enzyme-bound “catalytic” metal coordination complex lowers the pKa of the lysine nucleophile and stabilizes the transition state of the ATP α phosphate; and (ii) a second metal coordination complex bridges the β- and γ-phosphates. The NgrRnl N domain is a distinctively embellished oligonucleotide-binding (OB) fold that engages the γ-phosphate and associated metal complex and orients the pyrophosphate leaving group for in-line catalysis with stereochemical inversion at the AMP phosphate. The unique domain architecture of NgrRnl fortifies the theme that RNA ligases have evolved many times, and independently, by fusions of a shared nucleotidyltransferase domain to structurally diverse flanking modules. The mechanistic insights to lysine adenylylation gained from the NgrRnl structures are likely to apply broadly to the covalent nucleotidyltransferase superfamily of RNA ligases, DNA ligases, and RNA capping enzymes.
机译:ATP依赖性RNA连接酶是连接3'-OH和5'-PO4 RNA末端的RNA修复剂。 Naegleria gruberi RNA连接酶(NgrRnl)代表了在细菌,病毒和真核生物中发现的RNA缺口密封酶家族。 NgrRnl的晶体结构沿着共价连接酶-(赖氨酰-Nζ)-AMP•Mn 2 + 中间体的反应路径分三个步骤;连接酶·ATP·(Mn 2 + )2 Michaelis配合物;和ligase•Mn 2 + 配合物-强调核苷酸转移的两种金属机制,其中(i)酶结合的“催化”金属配位配合物降低了赖氨酸亲核试剂的pKa并稳定了过渡ATPα磷酸盐的状态; (ii)第二种金属配位络合物桥接β-和γ-磷酸盐。 NgrRnl N结构域是一个独特的修饰寡核苷酸结合(OB)折叠,它与γ-磷酸盐和相关的金属配合物结合,并使焦磷酸盐离去基团定向以进行在线催化,并在AMP磷酸盐处进行立体化学转化。 NgrRnl独特的结构域结构强化了这样的主题,即RNA连接酶已经通过独立地通过共享核苷酸转移酶结构域与结构多样的侧翼模块融合而进化了许多次。从NgrRnl结构获得的赖氨酸腺苷酸化作用的机械学见解可能广泛地应用于RNA连接酶,DNA连接酶和RNA封端酶的共价核苷酸转移酶超家族。

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