首页> 外文期刊>Journal of Molecular Biology >The Crystal Structure of a Complex of Campylobacter jejuni dUTPase with Substrate Analogue Sheds Light on the Mechanism and Suggests the 'Basic Module' for Dimeric d(C/U)TPases.
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The Crystal Structure of a Complex of Campylobacter jejuni dUTPase with Substrate Analogue Sheds Light on the Mechanism and Suggests the 'Basic Module' for Dimeric d(C/U)TPases.

机译:空肠弯曲菌dUTPase与底物类似物的复合物的晶体结构揭示了该机理,并暗示了二聚d(C / U)TPase的“基本模块”。

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The crystal structure of the dUTPase from the important gastric pathogen Campylobacter jejuni has been solved at 1.65A spacing. This essential bacterial enzyme is the second representative of the new family of dimeric dUTPases to be structurally characterised. Members of this family have a novel all-alpha fold and are unrelated to the all-beta dUTPases of the majority of organisms including eukaryotes such as humans, bacteria such as Escherichia coli, archaea like Methanococcus jannaschii and animal viruses. Therefore, dimeric dUTPases can be considered as candidate drug targets. The X-ray structure of the C.jejuni dUTPase in complex with the non-hydrolysable substrate analogue dUpNHp allows us to define the positions of three catalytically significant phosphate-binding magnesium ions and provides a starting point for a detailed understanding of the mechanism of dUTP/dUDP hydrolysis by dimeric dUTPases. Indeed, a water molecule present in the structure is ideally situated to act as the attacking nucleophile during hydrolysis. A comparison of the dUTPases from C.jejuni and Trypanosoma cruzi reveals a common fold with certain distinct features, both in the rigid and mobile domains as defined in the T.cruzi structure. Homologues of the C.jejuni dUTPase have been identified in several other bacteria and bacteriophages, including the dCTPase of phage T4. Sequence comparisons of these proteins define a new superfamily of d(C/U)TPases that includes three distinct enzyme families: (1) dUTPases in trypanosomatides, C.jejuni and several other Gram-negative bacteria, (2) predicted dUTPases in various Gram-positive bacteria and their phages, and (3) dCTP/dUTPases in enterobacterial T4-like phages. All these enzymes share a basic module that consists of two alpha-helices from the rigid domain, two helices from the mobile domain and connecting loops. These results in concert with a number of conserved residues responsible for interdomain cross-talk provide valuable insight towards rational drug design.
机译:来自重要胃病空肠弯曲杆菌的dUTPase的晶体结构已在1.65A的间距处解析。这种必需的细菌酶是二聚体dUTPases新家族中第二个代表结构的特征。该家族的成员具有新颖的全α折叠,并且与大多数生物体的全βdUTP酶无关,包括人类等真核生物,大肠杆菌等细菌,詹纳氏甲烷球菌等古生菌和动物病毒。因此,二聚体dUTPases可被视为候选药物靶标。空肠弯曲杆菌dUTPase与不可水解底物类似物dUpNHp的X射线结构使我们能够确定三个具有催化作用的磷酸结合镁离子的位置,并为详细了解dUTP的机理提供了一个起点/ dUDP被二聚体dUTPases水解。实际上,存在于结构中的水分子理想地定位为在水解过程中充当攻击亲核试剂。对空肠弯曲杆菌和克氏锥虫的dUTPases的比较显示,在T.cruzi结构中定义的刚性和活动域中,具有某些独特特征的共有折叠。空肠梭菌dUTPase的同源物已经在其他几种细菌和噬菌体中鉴定,包括噬菌体T4的dCTPase。这些蛋白质的序列比较定义了一个新的d(C / U)TPase超家族,其中包括三个不同的酶家族:(1)锥虫,空肠弯曲杆菌和其他几种革兰氏阴性细菌中的dUTPases,(2)各种革兰氏蛋白中预测的dUTPases阳性细菌及其噬菌体,以及(3)肠细菌性T4样噬菌体中的dCTP / dUTPases。所有这些酶共有一个基本模块,该模块由刚性结构域中的两个α螺旋,移动结构域中的两个螺旋和连接环组成。这些结果与负责域间串扰的许多保守残基一致,为合理的药物设计提供了宝贵的见识。

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