Summers Emma L, Cumming Mathew H, Oulavallickal Tifany, Roberts Nicholas J, Arcus Vickery L
School of Science, University of Waikato, Private Bag 3105, Hamilton, 3240, New Zealand.
Seafood Research Unit, Plant and Food Research, PO Box 5114, Port Nelson, 7043, New Zealand.
Protein Sci. 2017 Aug;26(8):1627-1638. doi: 10.1002/pro.3199. Epub 2017 Jun 6.
Extracellular nucleoside triphosphate diphosphohydrolases (NTPDases) are enzymes that hydrolyze extracellular nucleotides to the respective monophosphate nucleotides. In the past 20 years, NTPDases belonging to mammalian, parasitic and prokaryotic domains of life have been discovered, cloned and characterized. We reveal the first structures of NTPDases from the legume plant species Trifolium repens (7WC) and Vigna unguiculata subsp. cylindrica (DbLNP). Four crystal structures of 7WC and DbLNP were determined at resolutions between 1.9 and 2.6 Å. For 7WC, structures were determined for an -apo form (1.89 Å) and with the product AMP (2.15 Å) and adenine and phosphate (1.76 Å) bound. For DbLNP, a structure was solved with phosphate and manganese bound (2.60 Å). Thorough kinetic data and analysis is presented. The structure of 7WC and DbLNP reveals that these NTPDases can adopt two conformations depending on the molecule and co-factor bound in the active site. A central hinge region creates a "butterfly-like" motion of the domains that reduces the width of the inter-domain active site cleft upon molecule binding. This phenomenon has been previously described in Rattus norvegicus and Legionella pneumophila NTPDaseI and Toxoplasma gondii NTPDaseIII suggesting a common catalytic mechanism across the domains of life.
细胞外核苷三磷酸二磷酸水解酶(NTPDases)是一类将细胞外核苷酸水解为相应单磷酸核苷酸的酶。在过去20年中,已发现、克隆并鉴定了属于哺乳动物、寄生虫和原核生物生命域的NTPDases。我们揭示了豆科植物白三叶草(7WC)和豇豆亚种圆柱形豇豆(DbLNP)中NTPDases的首个结构。测定了7WC和DbLNP的四个晶体结构,分辨率在1.9至2.6Å之间。对于7WC,测定了无配体形式(1.89Å)以及结合产物AMP(2.15Å)、腺嘌呤和磷酸盐(1.76Å)的结构。对于DbLNP,解析了结合磷酸盐和锰的结构(2.60Å)。给出了详尽的动力学数据和分析。7WC和DbLNP的结构表明,这些NTPDases可根据结合在活性位点的分子和辅因子采取两种构象。一个中央铰链区产生结构域的“蝴蝶状”运动,在分子结合时减小结构域间活性位点裂隙的宽度。这种现象先前在褐家鼠和嗜肺军团菌NTPDaseI以及刚地弓形虫NTPDaseIII中已有描述,表明在整个生命域中存在共同的催化机制。