首页> 美国卫生研究院文献>Nucleic Acids Research >Structures of bacterial polynucleotide kinase in a Michaelis complex with GTP•Mg2+ and 5′-OH oligonucleotide and a product complex with GDP•Mg2+ and 5′-PO4 oligonucleotide reveal a mechanism of general acid-base catalysis and the determinants of phosphoacceptor recognition
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Structures of bacterial polynucleotide kinase in a Michaelis complex with GTP•Mg2+ and 5′-OH oligonucleotide and a product complex with GDP•Mg2+ and 5′-PO4 oligonucleotide reveal a mechanism of general acid-base catalysis and the determinants of phosphoacceptor recognition

机译:具有GTP•Mg2 +和5-OH寡核苷酸的Michaelis配合物以及具有GDP•Mg2 +和5-PO4寡核苷酸的产品配合物中的细菌多核苷酸激酶的结构揭示了一般的酸碱催化机制和磷酸受体识别的决定因素。

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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 an NTP donor to a 5′-OH polynucleotide acceptor. Here we report the crystal structures of CthPnk-D38N in a Michaelis complex with GTP•Mg2+ and a 5′-OH oligonucleotide and a product complex with GDP•Mg2+ and a 5′-PO4 oligonucleotide. The O5′ nucleophile is situated 3.0 Å from the GTP γ phosphorus in the Michaelis complex, where it is coordinated by Asn38 and is apical to the bridging β phosphate oxygen of the GDP leaving group. In the product complex, the transferred phosphate has undergone stereochemical inversion and Asn38 coordinates the 5′-bridging phosphate oxygen of the oligonucleotide. The D38N enzyme is poised for catalysis, but cannot execute because it lacks Asp38—hereby implicated as the essential general base catalyst that abstracts a proton from the 5′-OH during the kinase reaction. Asp38 serves as a general acid catalyst during the ‘reverse kinase’ reaction by donating a proton to the O5′ leaving group of the 5′-PO4 strand. The acceptor strand binding mode of CthPnk is distinct from that of bacteriophage T4 Pnk.
机译:热纤梭菌多核苷酸激酶(CthPnk),细菌RNA修复系统的5'末端修复模块,催化从NTP供体到5'-OH多核苷酸受体的可逆磷酸转移。在这里,我们报道了Michaelis与GTP•Mg 2 + 和5'-OH寡核苷酸以及GDP•Mg 2 + 和5'-PO4寡核苷酸。 O5'亲核试剂与Michaelis配合物中的GTPγ磷相距3.0Å,在此处由Asn38进行配位,并与GDP离去基团的β磷酸氧桥接。在产物复合物中,转移的磷酸已经经历立体化学转化,并且Asn38配位寡核苷酸的5'-桥磷酸氧。 D38N酶已准备好进行催化,但由于缺乏Asp38而无法执行,因此被认为是在激酶反应过程中从5'-OH提取质子的基本通用碱催化剂。 Asp38通过向5'-PO4链的O5'离开基团提供质子,在“反向激酶”反应中充当一般的酸催化剂。 CthPnk的受体链结合模式不同于噬菌体T4 Pnk。

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