Aitken Susan M, Ouellet Marc, Percival M David, English Ann M
Department of Chemistry and Biochemistry, Concordia University, 7141 Sherbrooke West, Montreal, Quebec, Canada, H4B 1R6.
Biochem J. 2003 Nov 1;375(Pt 3):613-21. doi: 10.1042/BJ20021936.
Many compounds are oxidized by haem enzymes, such as peroxidases and cytochromes P450, to highly reactive intermediates that function as enzyme inactivators. To evaluate the potential of arylhydrazides as selective metabolically activated peroxidase inhibitors, the mechanism of HRPC (horseradish peroxidase isoenzyme C) inhibition by BZH (benzhydrazide) was investigated in detail. No oxygen consumption was detected in BZH solutions at pH 7.0-12.0, but addition of HRPC resulted in significant O2 uptake above pH 8.0, indicating that the enzyme catalyses BZH oxidation. Addition of H2O2 to HRPC plus BZH activates the latter as an inhibitor. This involves the three-electron oxidation of BZH in one-electron steps by the peroxidase catalytic intermediates, Compounds I and II, to produce a benzoyl radical that covalently alters the active site and inhibits peroxidase activity. Alternatively, the benzoyl radical could be produced by di-imide (NH=NH) elimination from the BZH radical. Production of Compound III (oxyperoxidase) followed by p-670 (m/z =583, biliverdin-like derivative) was observed for HRPC incubated with excess H2O2, and the addition of BZH resulted in an increase in the rate of p-670 production. BZH is an inefficient inhibitor of HRPC with a K(I) of 80 muM, an apparent inactivation rate constant (k(inact)) of 0.035 min(-1), and an IC50 of 1.0 mM. This prompted the investigation of HRPC inactivation by a series of related arylhydrazides with known binding affinities for HRPC. The hydrazide with the highest affinity (2-naphthoichydrazide; K(d)=5.2 muM) was also found to be the most effective inhibitor with K(I), k(inact) and IC50 values of 14 muM, 0.14 min(-1) and 35 muM, respectively.
许多化合物可被血红素酶(如过氧化物酶和细胞色素P450)氧化为高反应性中间体,这些中间体可作为酶的失活剂。为了评估芳基酰肼作为选择性代谢激活的过氧化物酶抑制剂的潜力,详细研究了苯甲酰肼(BZH)对辣根过氧化物酶同工酶C(HRPC)的抑制机制。在pH 7.0 - 12.0的BZH溶液中未检测到氧气消耗,但加入HRPC后,在pH 8.0以上导致显著的氧气摄取,表明该酶催化BZH氧化。向HRPC加BZH中加入过氧化氢会激活后者成为抑制剂。这涉及过氧化物酶催化中间体化合物I和II以单电子步骤将BZH进行三电子氧化,生成苯甲酰自由基,该自由基共价改变活性位点并抑制过氧化物酶活性。或者,苯甲酰自由基可由BZH自由基消除二亚胺(NH = NH)产生。在用过量过氧化氢孵育的HRPC中观察到产生化合物III(氧合过氧化物酶),随后产生p - 670(m/z = 583,类胆绿素衍生物),加入BZH导致p - 670产生速率增加。BZH是HRPC的低效抑制剂,其抑制常数K(I)为80 μM,表观失活速率常数k(inact)为0.035 min⁻¹,半数抑制浓度IC50为1.0 mM。这促使人们研究一系列对HRPC具有已知结合亲和力的相关芳基酰肼对HRPC的失活作用。具有最高亲和力的酰肼(2 - 萘甲酰肼;解离常数K(d)=5.2 μM)也被发现是最有效的抑制剂,其K(I)、k(inact)和IC50值分别为14 μM、0.14 min⁻¹和35 μM。