Cama Evis, Pethe Stéphanie, Boucher Jean-Luc, Han Shoufa, Emig Frances A, Ash David E, Viola Ronald E, Mansuy Daniel, Christianson David W
Roy and Diana Vagelos Laboratories, Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, USA.
Biochemistry. 2004 Jul 20;43(28):8987-99. doi: 10.1021/bi0491705.
Arginase is a manganese metalloenzyme that catalyzes the hydrolysis of L-arginine to form L-ornithine and urea. The structure and stability of the binuclear manganese cluster are critical for catalytic activity as it activates the catalytic nucleophile, metal-bridging hydroxide ion, and stabilizes the tetrahedral intermediate and its flanking states. Here, we report X-ray structures of a series of inhibitors bound to the active site of arginase, and each inhibitor exploits a different mode of coordination with the Mn(2+)(2) cluster. Specifically, we have studied the binding of fluoride ion (F(-); an uncompetitive inhibitor) and L-arginine, L-valine, dinor-N(omega)-hydroxy-L-arginine, descarboxy-nor-N(omega)-hydroxy-L-arginine, and dehydro-2(S)-amino-6-boronohexanoic acid. Some inhibitors, such as fluoride ion, dinor-N(omega)-hydroxy-L-arginine, and dehydro-2(S)-amino-6-boronohexanoic acid, cause the net addition of one ligand to the Mn(2+)(2) cluster. Other inhibitors, such as descarboxy-nor-N(omega)-hydroxy-L-arginine, simply displace the metal-bridging hydroxide ion of the native enzyme and do not cause any net change in the metal coordination polyhedra. The highest affinity inhibitors displace the metal-bridging hydroxide ion (and sometimes occupy a Mn(2+)(A) site found vacant in the native enzyme) and maintain a conserved array of hydrogen bonds with their alpha-amino and -carboxylate groups.
精氨酸酶是一种锰金属酶,可催化L-精氨酸水解生成L-鸟氨酸和尿素。双核锰簇的结构和稳定性对于催化活性至关重要,因为它能激活催化亲核试剂——金属桥连氢氧根离子,并稳定四面体中间体及其侧翼状态。在此,我们报告了一系列与精氨酸酶活性位点结合的抑制剂的X射线结构,每种抑制剂与Mn(2+)(2)簇采用不同的配位模式。具体而言,我们研究了氟离子(F(-);一种非竞争性抑制剂)以及L-精氨酸、L-缬氨酸、二去甲-N(ω)-羟基-L-精氨酸、脱羧去甲-N(ω)-羟基-L-精氨酸和脱氢-2(S)-氨基-6-硼代己酸的结合情况。一些抑制剂,如氟离子、二去甲-N(ω)-羟基-L-精氨酸和脱氢-2(S)-氨基-6-硼代己酸,会使一个配体净添加到Mn(2+)(2)簇上。其他抑制剂,如脱羧去甲-N(ω)-羟基-L-精氨酸,只是取代了天然酶的金属桥连氢氧根离子,且不会导致金属配位多面体发生任何净变化。亲和力最高的抑制剂取代金属桥连氢氧根离子(有时占据天然酶中一个空缺的Mn(2+)(A)位点),并通过其α-氨基和羧酸盐基团维持一系列保守的氢键。