Forghani F, Ouellet M, Keen S, Percival M D, Tagari P
Merck Frosst Centre for Therapeutic Research, Pointe Claire-Dorval, Quebec, Canada.
Anal Biochem. 1998 Nov 15;264(2):216-21. doi: 10.1006/abio.1998.2842.
The inducible form of the heme-protein prostaglandin G/H synthase (PGHS-2 or COX-2) has been established as a pivotal enzyme in the cascade of events leading to inflammation, hyperalgesia, and pyresis and represents a major therapeutic target in inflammatory disease. Accordingly, we have exploited the heme-catalyzed hydroperoxidase activity of recombinant hCOX-2 to generate luminescence in the presence of luminol, or a cyclic naphthalene hydrazide, and the substrate arachidonic acid. Arachidonate-induced luminescence was shown to be an index of real-time catalytic activity and demonstrated the turnover inactivation of the enzyme. Luminol luminescence was proportional to hCOX-2 concentration and gave accurate Km determinations for arachidonate. Inhibition of hCOX-2 activity, measured by luminescence, by a variety of selective (for COX-2) and nonselective inhibitors showed rank orders of potency similar to those observed with other in vitro and whole cell methods using the recombinant protein. The sensitivity of the luminescence assay also allowed determination of inhibitor potency at substrate concentrations below Km, distinguishing competitive inhibitors such as ibuprofen from time-dependent inhibitors such as DuP-697. Finally the use of higher quantum-yielding luminol analogues allowed measurement of cyclooxygenase activity at extremely low substrate and protein concentrations, enabling a variety of novel assay formats.
血红素蛋白前列腺素G/H合酶(PGHS-2或COX-2)的诱导形式已被确认为导致炎症、痛觉过敏和发热的一系列事件中的关键酶,并且是炎症性疾病的主要治疗靶点。因此,我们利用重组人COX-2的血红素催化氢过氧化物酶活性,在鲁米诺或环状萘酰肼以及底物花生四烯酸存在的情况下产生发光现象。花生四烯酸诱导的发光被证明是实时催化活性的指标,并证明了该酶的周转失活。鲁米诺发光与重组人COX-2浓度成正比,并能准确测定花生四烯酸的米氏常数(Km)。通过发光测量,多种选择性(针对COX-2)和非选择性抑制剂对重组人COX-2活性的抑制作用显示出的效价顺序,与使用重组蛋白的其他体外和全细胞方法所观察到的相似。发光测定法的灵敏度还允许在底物浓度低于Km时测定抑制剂的效价,从而区分布洛芬等竞争性抑制剂和DuP-697等时间依赖性抑制剂。最后,使用更高量子产率的鲁米诺类似物能够在极低的底物和蛋白质浓度下测量环氧化酶活性,从而实现多种新颖的测定形式。