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Structures of Bacterial Polynucleotide Kinase in a Michaelis Complex with Nucleoside Triphosphate (NTP)-Mg2+ and 5′-OH RNA and a Mixed Substrate-Product Complex with NTP-Mg2+ and a 5′-Phosphorylated Oligonucleotide

机译:带有核苷三磷酸(NTP)-Mg2 +和5-OH RNA的Michaelis复合物和带有NTP-Mg2 +和5-磷酸化的寡核苷酸的混合底物-产物复合物的细菌多核苷酸激酶的结构。

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摘要

Clostridium thermocellum polynucleotide kinase (CthPnk), the 5′-end-healing module of a bacterial RNA repair system, catalyzes reversible phosphoryl transfer from a nucleoside triphosphate (NTP) donor to a 5′-OH polynucleotide acceptor, either DNA or RNA. Here we report the 1.5-Å crystal structure of CthPnk-D38N in a Michaelis complex with GTP-Mg2+ and a 5′-OH RNA oligonucleotide. The RNA-binding mode of CthPnk is different from that of the metazoan RNA kinase Clp1. CthPnk makes hydrogen bonds to the ribose 2′-hydroxyls of the 5′ terminal nucleoside, via Gln51, and the penultimate nucleoside, via Gln83. The 5′-terminal nucleobase is sandwiched by Gln51 and Val129. Mutating Gln51 or Val129 to alanine reduced kinase specific activity 3-fold. Ser37 and Thr80 donate functionally redundant hydrogen bonds to the terminal phosphodiester; a S37A-T80A double mutation reduced kinase activity 50-fold. Crystallization of catalytically active CthPnk with GTP-Mg2+ and a 5′-OH DNA yielded a mixed substrate-product complex with GTP-Mg2+ and 5′-PO4 DNA, wherein the product 5′ phosphate group is displaced by the NTP γ phosphate and the local architecture of the acceptor site is perturbed.
机译:细菌RNA修复系统的5'-末端修复模块热纤梭菌多核苷酸激酶(CthPnk)催化从核苷三磷酸(NTP)供体到5'-OH多核苷酸受体(DNA或RNA)的可逆磷酸转移。在这里,我们报道了Michaelis与GTP-Mg 2 + 和5'-OH RNA寡核苷酸形成的CthPnk-D38N的1.5-Å晶体结构。 CthPnk的RNA结合模式不同于后生动物RNA激酶Clp1的RNA结合模式。 CthPnk通过Gln51与5'末端核苷的核糖2'-羟基形成氢键,并通过Gln83与倒数第二个核苷形成氢键。 5′-末端核碱基被Gln51和Val129夹在中间。将Gln51或Val129突变为丙氨酸会使激酶的比活性降低3倍。 Ser37和Thr80在末端磷酸二酯上提供功能上多余的氢键; S37A-T80A双重突变使激酶活性降低了50倍。用GTP-Mg 2 + 和5'-OH DNA结晶具有催化活性的CthPnk产生了带有GTP-Mg 2 + 和5'-PO4的底物-产物复合物DNA,其中产物5'磷酸基团被NTPγ磷酸酯置换,并且受体位点的局部结构受到干扰。

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