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Structure and mechanism of the polynucleotide kinase component of the bacterial Pnkp-Hen1 RNA repair system

机译:细菌Pnkp-Hen1 RNA修复系统中多核苷酸激酶成分的结构和机制

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Pnkp is the end-healing and end-sealing component of an RNA repair system present in diverse bacteria from many phyla. Pnkp is composed of three catalytic modules: an N-terminal polynucleotide 5′-kinase, a central 2′,3′ phosphatase, and a C-terminal ligase. Here we report the crystal structure of the kinase domain of Clostridium thermocellum Pnkp bound to ATP?Mg2+(substrate complex) and ADP?Mg2+ (product complex). The protein consists of a core P-loop phosphotransferase fold embellished by a distinctive homodimerization module composed of secondary structure elements derived from the N and C termini of the kinase domain. ATP is bound within a crescent-shaped groove formed by the P-loop ( 15GSSGSGKST23) and an overlying helix-loop-helix "lid." The a and b phosphates are engaged by a network of hydrogen bonds from Thr23 and the P-loop main-chain amides; the γ phosphate is anchored by the lid residues Arg120 and Arg123. The P-loop lysine (Lys21) and the catalytic Mg2+ bridge the ATP β and γ phosphates. The P-loop serine (Ser22) is the sole enzymic constituent of the octahedral metal coordination complex. Structure-guided mutational analysis underscored the essential contributions of Lys21 and Ser22 in the ATP donor site and Asp38 and Arg41 in the phosphoacceptor site. Our studies suggest a catalytic mechanism whereby Asp38 (as general base) activates the polynucleotide 5′-OH for its nucleophilic attack on the γ phosphorus and Lys21 and Mg2+ stabilize the transition state.
机译:Pnkp是存在于许多门的多种细菌中的RNA修复系统的末端修复和末端密封组件。 Pnkp由三个催化模块组成:N末端多核苷酸5'激酶,中央2',3'磷酸酶和C末端连接酶。在这里,我们报道了热纤梭菌Pnkp的激酶结构域的晶体结构,该激酶结构域与ATP?Mg2 +(底物复合物)和ADP?Mg2 +(产物复合物)结合。该蛋白质由核心P环磷酸转移酶折叠而成,该核心被独特的均二聚模块修饰,该模块由衍生自激酶域N和C末端的二级结构元件组成。 ATP绑定在由P环(15GSSGSGKST23)和上覆的螺旋环-螺旋“盖”形成的月牙形凹槽内。 a和b磷酸酯通过Thr23和P环主链酰胺的氢键网络接合; γ磷酸盐被盖残基Arg120和Arg123固定。 P环赖氨酸(Lys21)和催化的Mg2 +桥接ATPβ和γ磷酸酯。 P环丝氨酸(Ser22)是八面体金属配位化合物的唯一酶成分。结构指导的突变分析强调了在ATP供体位点上的Lys21和Ser22以及在磷酸受体位点上的Asp38和Arg41的重要贡献。我们的研究提出了一种催化机制,其中Asp38(作为通用碱基)激活多核苷酸5'-OH使其对γ磷产生亲核攻击,Lys21和Mg2 +稳定过渡态。

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