Superoxide-dependent oxidation of melatonin by myeloperoxidase

被引:66
作者
Ximenes, VF
Silva, SO
Rodrigues, MR
Catalani, LH
Maghzal, GJ
Kettle, AJ
Campa, A
机构
[1] Christchurch Sch Med & Hlth Sci, Dept Pathol, Christchurch, New Zealand
[2] Univ Sao Paulo, Fac Ciencias Farmaceut, Dept Anal Clin & Toxicol, Sao Paulo, Brazil
[3] Univ Sao Paulo, Inst Quim, Sao Paulo, Brazil
关键词
D O I
10.1074/jbc.M506384200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Myeloperoxidase uses hydrogen peroxide to oxidize numerous substrates to hypohalous acids or reactive free radicals. Here we show that neutrophils oxidize melatonin to N-1-acetyl-N-2-formyl-5-methoxykynuramine (AFMK) in a reaction that is catalyzed by myeloperoxidase. Production of AFMK was highly dependent on superoxide but not hydrogen peroxide. It did not require hypochlorous acid, singlet oxygen, or hydroxyl radical. Purified myeloperoxidase and a superoxide-generating system oxidized melatonin to AFMK and a dimer. The dimer would result from coupling of melatonin radicals. Oxidation of melatonin was partially inhibited by catalase or superoxide dismutase. Formation of AFMK was almost completely eliminated by superoxide dismutase but weakly inhibited by catalase. In contrast, production of melatonin dimer was enhanced by superoxide dismutase and blocked by catalase. We propose that myeloperoxidase uses superoxide to oxidize melatonin by two distinct pathways. One pathway involves the classical peroxidation mechanism in which hydrogen peroxide is used to oxidize melatonin to radicals. Superoxide adds to these radicals to form an unstable peroxide that decays to AFMK. In the other pathway, myeloperoxidase uses superoxide to insert dioxygen into melatonin to form AFMK. This novel activity expands the types of oxidative reactions myeloperoxidase can catalyze. It should be relevant to the way neutrophils use superoxide to kill bacteria and how they metabolize xenobiotics.
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页码:38160 / 38169
页数:10
相关论文
共 59 条
[1]   Mechanism of reaction of melatonin with human myeloperoxidase [J].
Allegra, M ;
Furtmüller, PG ;
Regelsberger, G ;
Turco-Liveri, ML ;
Tesoriere, L ;
Perretti, M ;
Livrea, RA ;
Obinger, C .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2001, 282 (02) :380-386
[2]  
BEERS RF, 1952, J BIOL CHEM, V195, P133
[3]  
Brzezinski Amnon, 1997, New England Journal of Medicine, V336, P186
[4]   Evidence of melatonin synthesis by human lymphocytes and its physiological significance:: possible role as intracrine, autocrine, and/or paracrine substance [J].
Carrillo-Vico, A ;
Calvo, JR ;
Abreu, P ;
Lardone, PJ ;
García-Mauriño, S ;
Reiter, RJ ;
Guerrero, JM .
FASEB JOURNAL, 2004, 18 (01) :537-+
[5]   The protective role of endogenous melatonin in carrageenan-induced pleurisy in the rat [J].
Cuzzocrea, S ;
Tan, DX ;
Costantino, G ;
Mazzon, E ;
Caputi, AP ;
Reiter, RJ .
FASEB JOURNAL, 1999, 13 (14) :1930-1938
[6]   Reaction of superoxide with phenoxyl-type radicals [J].
d'Alessandro, N ;
Bianchi, G ;
Fang, XW ;
Jin, FM ;
Schuchmann, HP ;
von Sonntag, C .
JOURNAL OF THE CHEMICAL SOCIETY-PERKIN TRANSACTIONS 2, 2000, (09) :1862-1867
[7]  
DAVIS WB, 1989, BIOCHEM PHARMACOL, V38, P4013
[8]  
de Almeida EA, 2003, J PINEAL RES, V35, P131
[9]   Myeloperoxidase-catalyzed oxidation of melatonin by activated neutrophils [J].
Silva, SO ;
Ximenes, VF ;
Catalani, LH ;
Campa, A .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2000, 279 (02) :657-662
[10]   Kinetics of oxidation of serotonin by myeloperoxidase compounds I and II [J].
Dunford, HB ;
Hsuanyu, Y .
BIOCHEMISTRY AND CELL BIOLOGY-BIOCHIMIE ET BIOLOGIE CELLULAIRE, 1999, 77 (05) :449-457