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帽状结构域封闭使C2型卤代酸脱卤酶样糖磷酸酶恶性疟原虫HAD1能够识别多种底物。

Cap-domain closure enables diverse substrate recognition by the C2-type haloacid dehalogenase-like sugar phosphatase Plasmodium falciparum HAD1.

作者信息

Park Jooyoung, Guggisberg Ann M, Odom Audrey R, Tolia Niraj H

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St Louis, MO 63110, USA.

Department of Pediatrics, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 Sep;71(Pt 9):1824-34. doi: 10.1107/S1399004715012067. Epub 2015 Aug 25.

Abstract

Haloacid dehalogenases (HADs) are a large enzyme superfamily of more than 500,000 members with roles in numerous metabolic pathways. Plasmodium falciparum HAD1 (PfHAD1) is a sugar phosphatase that regulates the methylerythritol phosphate (MEP) pathway for isoprenoid synthesis in malaria parasites. However, the structural determinants for diverse substrate recognition by HADs are unknown. Here, crystal structures were determined of PfHAD1 in complex with three sugar phosphates selected from a panel of diverse substrates that it utilizes. Cap-open and cap-closed conformations are observed, with cap closure facilitating substrate binding and ordering. These structural changes define the role of cap movement within the major subcategory of C2 HAD enzymes. The structures of an HAD bound to multiple substrates identifies binding and specificity-determining residues that define the structural basis for substrate recognition and catalysis within the HAD superfamily. While the substrate-binding region of the cap domain is flexible in the open conformations, this region becomes ordered and makes direct interactions with the substrate in the closed conformations. These studies further inform the structural and biochemical basis for catalysis within a large superfamily of HAD enzymes with diverse functions.

摘要

卤代酸脱卤酶(HADs)是一个拥有超过50万个成员的大型酶超家族,在众多代谢途径中发挥作用。恶性疟原虫HAD1(PfHAD1)是一种糖磷酸酶,可调节疟原虫中异戊二烯合成的甲基赤藓糖醇磷酸(MEP)途径。然而,HADs对多种底物识别的结构决定因素尚不清楚。在此,测定了PfHAD1与从其利用的多种底物中选出的三种糖磷酸形成复合物的晶体结构。观察到帽开放和帽闭合构象,帽闭合促进底物结合和有序排列。这些结构变化定义了帽运动在C2 HAD酶主要亚类中的作用。与多种底物结合的HAD结构鉴定出了决定结合和特异性的残基,这些残基定义了HAD超家族内底物识别和催化的结构基础。虽然帽结构域的底物结合区域在开放构象中是灵活的,但该区域在闭合构象中变得有序并与底物直接相互作用。这些研究进一步揭示了具有多种功能的大型HAD酶超家族内催化作用的结构和生化基础。

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