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使用旋转阳极X射线发生器和单一钐衍生物通过SIRAS测定的人尿苷-胞苷激酶2的结构。

Structure of human uridine-cytidine kinase 2 determined by SIRAS using a rotating-anode X-ray generator and a single samarium derivative.

作者信息

Appleby Todd C, Larson Gary, Cheney I Wayne, Walker Heli, Wu Jim Z, Zhong Weidong, Hong Zhi, Yao Nanhua

机构信息

Drug Discovery, Valeant Pharmaceuticals International, 3300 Hyland Avenue, Costa Mesa, CA 92626, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2005 Mar;61(Pt 3):278-84. doi: 10.1107/S0907444904032937. Epub 2005 Feb 24.

Abstract

Uridine-cytidine nucleoside kinase 2 (UCK2) is the rate-limiting enzyme in the pyrimidine-nucleotide salvage pathway. UCK2 catalyzes the phosphorylation of the natural ribonucleosides cytidine and uridine to cytidine 5'-monophosphate (CMP) and uridine 5'-monophosphate (UMP), respectively, and activates several important frontline antimetabolite drugs. The present contribution reports the rapid crystal structure determination of human UCK2 complexed with a magnesium ion and the reaction products adenosine 5'-diphosphate (ADP) and CMP. Diffraction data were collected on a copper rotating-anode X-ray generator from one native UCK2 crystal and a single samarium-derivative crystal. Utilizing the relatively high anomalous signal from the samarium derivative at the Cu Kalpha wavelength, the structure was determined by single isomorphous replacement and single anomalous signal (SIRAS) phasing techniques. Two of the four major samarium sites are located in the active sites of the two UCK2 molecules that form the asymmetric unit and appear to displace the magnesium ions present in the native crystals. The crystal structures of UCK2 alone and in complex with various ligands have recently been determined using traditional multiple isomorphous replacement (MIR) phasing techniques and data from three heavy-atom derivatives. The reported structures validate our independently determined structure. Of more than 1000 kinase crystal structure entries in the Protein Data Bank, less than 1% of them have been determined by SIRAS. For the published kinase crystal structures determined by SIRAS, all data were reportedly collected at various synchrotron-radiation facilities. This study demonstrates that diffraction data collected from a single samarium derivative using Cu Kalpha radiation provides sufficient phasing power to determine a novel macromolecular crystal structure.

摘要

尿苷 - 胞苷核苷激酶2(UCK2)是嘧啶核苷酸补救途径中的限速酶。UCK2催化天然核糖核苷胞苷和尿苷分别磷酸化为胞苷5'-单磷酸(CMP)和尿苷5'-单磷酸(UMP),并激活几种重要的一线抗代谢药物。本论文报道了与镁离子以及反应产物腺苷5'-二磷酸(ADP)和CMP复合的人UCK2的快速晶体结构测定。在一台铜旋转阳极X射线发生器上,从一块天然UCK2晶体和一块钐衍生物晶体收集了衍射数据。利用钐衍生物在铜Kα波长处相对较高的反常信号,通过单同晶置换和单反常信号(SIRAS)相位技术确定了结构。四个主要钐位点中的两个位于形成不对称单元的两个UCK2分子的活性位点,并且似乎取代了天然晶体中存在的镁离子。最近,已使用传统的多同晶置换(MIR)相位技术和来自三种重原子衍生物的数据确定了单独的UCK2以及与各种配体复合的UCK2的晶体结构。报道的结构验证了我们独立确定的结构。在蛋白质数据库中超过1000个激酶晶体结构条目中,通过SIRAS确定的结构不到1%。对于已发表的通过SIRAS确定的激酶晶体结构,据报道所有数据都是在各种同步辐射设施上收集的。这项研究表明,使用铜Kα辐射从单个钐衍生物收集的衍射数据提供了足够的相位能力来确定一种新的大分子晶体结构。

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