首页> 美国卫生研究院文献>Acta Crystallographica Section F: Structural Biology and Crystallization Communications >Crystallization and preliminary X-ray analysis of the open form of human ecto-5′-nucleotidase (CD73)
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Crystallization and preliminary X-ray analysis of the open form of human ecto-5′-nucleotidase (CD73)

机译:人ecto-5核苷酸酶(CD73)开放形式的结晶和初步X射线分析

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摘要

Eukaryotic ecto-5′-nucleotidase (e5NT) catalyses the hydrolysis of extracellular AMP to adenosine and plays a pivotal role in switching on adenosine signalling via the P1 receptors of the purinergic signalling pathway. With such an important regulatory role, e5NT has become an appealing new drug target, with potential applications in the treatment of inflammation, chronic pain, hypoxia and cancer. In order to gain insight into the structure and function of the eukaryotic e5NT enzymes and to assist in structure-based drug design, the crystal structure of human e5NT has been solved. Recombinant human e5NT comprising four asparagine-to-aspartate surface mutations targeting potential glycosylation sites was refolded from bacterial inclusion bodies. Refolded and purified human e5NT crystallized in space group P4332 and a data set to 1.85 Å resolution was obtained. The structure could be solved by molecular replacement using a polyalanine model generated from Thermus thermophilus 5′-nucleotidase (5NT). An anomalous data set revealed the presence of a metal-ion binding site, as well as calcium and chloride ion-binding sites. Structural comparisons with bacterial 5NT homologues showed that the human e5NT crystal structure has an open conformation in which the metal- and substrate-binding sites are distant from each other. Here, the crystallization and preliminary X-ray crystallo­graphic analysis of an open structural conformation of human e5NT are described.
机译:真核外切5'-核苷酸酶(e5NT)催化细胞外AMP水解为腺苷,并在通过嘌呤能信号途径的P1受体开启腺苷信号中起关键作用。凭借如此重要的调节作用,e5NT已成为吸引人的新药靶标,在治疗炎症,慢性疼痛,缺氧和癌症方面具有潜在的应用前景。为了深入了解真核e5NT酶的结构和功能并协助基于结构的药物设计,已经解决了人类e5NT的晶体结构。从细菌包涵体中折叠包含靶向潜在糖基化位点的四个从天冬酰胺到天冬氨酸的表面突变的重组人e5NT。重新折叠和纯化的人类e5NT在空间群P4332中结晶,并获得设置为1.85Å分辨率的数据。该结构可通过使用嗜热栖热菌5'-核苷酸酶(5NT)生成的聚丙氨酸模型进行分子置换来解决。异常数据集显示存在金属离子结合位点以及钙和氯离子结合位点。与细菌5NT同源物的结构比较表明,人e5NT晶体结构具有开放构象,其中金属和底物结合位点彼此远离。在这里,描述了人类e5NT的开放结构构象的结晶和初步X射线晶体学分析。

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