首页> 外文OA文献 >The Crystal Structure of the Leishmania major Deoxyuridine Triphosphate Nucleotidohydrolase in Complex with Nucleotide Analogues, dUMP, and Deoxyuridine*
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The Crystal Structure of the Leishmania major Deoxyuridine Triphosphate Nucleotidohydrolase in Complex with Nucleotide Analogues, dUMP, and Deoxyuridine*

机译:利什曼原虫主要脱氧尿苷三磷酸核苷水解酶与核苷酸类似物,dUMP和脱氧尿苷的复合物的晶体结构*

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摘要

Members of the Leishmania genus are the causative agents of the life-threatening disease leishmaniasis. New drugs are being sought due to increasing resistance and adverse side effects with current treatments. The knowledge that dUTPase is an essential enzyme and that the all α-helical dimeric kinetoplastid dUTPases have completely different structures compared with the trimeric β-sheet type dUTPase possessed by most organisms, including humans, make the dimeric enzymes attractive drug targets. Here, we present crystal structures of the Leishmania major dUTPase in complex with substrate analogues, the product dUMP and a substrate fragment, and of the homologous Campylobacter jejuni dUTPase in complex with a triphosphate substrate analogue. The metal-binding properties of both enzymes are shown to be dependent upon the ligand identity, a previously unseen characteristic of this family. Furthermore, structures of the Leishmania enzyme in the presence of dUMP and deoxyuridine coupled with tryptophan fluorescence quenching indicate that occupation of the phosphate binding region is essential for induction of the closed conformation and hence for substrate binding. These findings will aid in the development of dUTPase inhibitors as potential new lead anti-trypanosomal compounds.
机译:利什曼原虫属的成员是威胁生命的疾病利什曼原虫病的病原体。由于目前治疗中增加的抗药性和不良副作用,正在寻找新药。与大多数生物体(包括人)拥有的三聚体β-折叠型dUTPase相比,dUTPase是必不可少的酶,并且所有α螺旋二聚体运动质体dUTPases具有完全不同的结构,这一知识使二聚体酶成为有吸引力的药物靶标。在这里,我们介绍与基质类似物,产物dUMP和基质片段复合的利什曼原虫主要dUTPase的晶体结构,以及与三磷酸盐基质类似物复合的空肠弯曲杆菌dUTPase的晶体结构。已显示两种酶的金属结合特性取决于配体的同一性,这是该家族以前看不见的特征。此外,在存在dUMP和脱氧尿苷并色氨酸荧光猝灭的情况下,利什曼原虫酶的结构表明磷酸结合区的占据对于诱导封闭构象并因此对于底物结合是必不可少的。这些发现将有助于dUTPase抑制剂作为潜在的新型抗胰锥虫化合物的开发。

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