Bhattacharyya D K, Lecomte M, Rieke C J, Garavito M, Smith W L
Department of Biochemistry, Michigan State University, East Lansing 48824, USA.
J Biol Chem. 1996 Jan 26;271(4):2179-84. doi: 10.1074/jbc.271.4.2179.
Examination of the crystal structure of the ovine prostaglandin endoperoxide synthase-1 (PGHS-1)/S- flurbiprofen complex (Picot, D., Loll, P.J., and Garavito, R.M. (1994) Nature 367, 243-2491) suggests (a) that the carboxyl group of arachidonic acid interacts with the arginino group of Arg120; (b) that Arg120 forms an important salt bridge with Glu524; and (c) that Tyr355, which is in close proximity to Arg120, could determine the stereochemical specificity of PGHS-1 toward 2-phenylpropionic acid inhibitors. To test these concepts, we used site-directed mutagenesis to prepare ovine PGHS-1 mutants having modifications of Arg120 (R120K, R120Q, R120E), Glu524 (E524D, E524Q, E524K), and Tyr355 (Y355F) and examined the properties of the mutant enzymes expressed in COS-1 cells. All of the mutants retained at least part of their cyclooxygenase and peroxidase activities except the R120E mutant, which had no detectable activity. The Km values of the R120K and R120Q mutants with arachidonic acid were 87 and 3300 microM, respectively, versus 4 microM for native PGHS-1. The R120Q mutant failed to undergo suicide inactivation during catalysis or time-dependent inhibition by flurbiprofen. These results are consistent with Arg120 binding the carboxylate group of arachidonate and suggest that interaction of the carboxylate group of substrates and inhibitors with Arg120 is necessary for suicide inactivation and time-dependent inhibition, respectively. The Km values for the E524D, E524Q, and E524K mutants were not significantly different from values obtained for the native PGHS-1, suggesting that this residue is not importantly involved in catalysis or substrate binding. The effect of modifications of Arg120 and Tyr355 on the stereospecificity of inhibitor binding was determined. Ratios of IC50 values for cyclooxygenase inhibition by D- and L-ibuprofen, a competitive cyclooxygenase inhibitor, were 32, 67, and 7.1 for native PGHS-1, R120Q PGHS-1, and Y355F PGHS-1, respectively. The decreased stereochemical specificity observed with the Y355F PGHS-1 mutant suggests that Tyr355 is a determinant of the stereospecificity of PGHS-1 toward inhibitors of the 2-phenylpropionic acid class.
对绵羊前列腺素内过氧化物合酶-1(PGHS-1)/S-氟比洛芬复合物晶体结构的研究(皮科特,D.,洛尔,P.J.,加拉维托,R.M.(1994年)《自然》367卷,243 - 249页)表明:(a)花生四烯酸的羧基与精氨酸120的胍基相互作用;(b)精氨酸120与谷氨酸524形成重要的盐桥;(c)与精氨酸120紧邻的酪氨酸355可能决定PGHS-1对2-苯丙酸抑制剂的立体化学特异性。为验证这些观点,我们利用定点诱变技术制备了对精氨酸120(R120K、R120Q、R120E)、谷氨酸524(E524D、E524Q、E524K)和酪氨酸355(Y355F)进行修饰的绵羊PGHS-1突变体,并检测了在COS-1细胞中表达的突变酶的性质。除R120E突变体无可检测活性外,所有突变体至少保留了部分环氧化酶和过氧化物酶活性。R120K和R120Q突变体对花生四烯酸的Km值分别为87和3300微摩尔,而天然PGHS-1的该值为4微摩尔。R120Q突变体在催化过程中未发生自杀失活,也未被氟比洛芬进行时间依赖性抑制。这些结果与精氨酸120结合花生四烯酸羧酸盐基团一致,表明底物和抑制剂的羧酸盐基团分别与精氨酸120相互作用对于自杀失活和时间依赖性抑制是必需的。E524D、E524Q和E524K突变体的Km值与天然PGHS-1的值无显著差异,表明该残基在催化或底物结合中不起重要作用。确定了精氨酸120和酪氨酸355修饰对抑制剂结合立体特异性的影响。竞争性环氧化酶抑制剂D-和L-布洛芬对环氧化酶抑制的IC50值之比,天然PGHS-1为32,R120Q PGHS-1为67,Y355F PGHS-1为7.1。Y355F PGHS-1突变体观察到的立体化学特异性降低表明酪氨酸355是PGHS-1对2-苯丙酸类抑制剂立体特异性的决定因素。