REDUCTION OF FERRYLMYOGLOBIN AND FERRYLHEMOGLOBIN BY NITRIC-OXIDE - A PROTECTIVE MECHANISM AGAINST FERRYL HEMOPROTEIN-INDUCED OXIDATIONS

被引:108
作者
GORBUNOV, NV
OSIPOV, AN
DAY, BW
ZAYASRIVERA, B
KAGAN, VE
ELSAYED, NM
机构
[1] UNIV PITTSBURGH, DEPT ENVIRONM & OCCUPAT HLTH, PITTSBURGH, PA 15238 USA
[2] UNIV PITTSBURGH, DEPT PHARMACEUT SCI, PITTSBURGH, PA 15238 USA
[3] UNIV PITTSBURGH, PITTSBURGH CANC INST, PITTSBURGH, PA 15238 USA
[4] UNIV CALIF LOS ANGELES, DEPT ENVIRONM & OCCUPAT HLTH SCI, LOS ANGELES, CA 90024 USA
关键词
D O I
10.1021/bi00020a014
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
The reactions of metmyoglobin (metMb) and methemoglobin (metHb), oxidized to their respective oxoferryl free radical species ((.)Mb-Fe-IV=O/(.)Hb-4Fe(IV)=O) by tert-butyl hydroperoxide (t-BuOOH), with nitric oxide (NO.) were studied by a combination of optical, electron spin resonance (ESR), ionspray mass (MS), fluorescence, and chemiluminescence spectrometries to gain insight into the mechanism by which NO. protects against oxidative injury produced by (.)Mb-Fe-IV=O/(.)Hb-4Fe(IV)=O. Oxidation of metMb/metHb by t-BuOOH in a nitrogen atmosphere proceeded via the formation of two protein electrophilic centers, which were heme oxoferryl and the apoprotein radical centered at tyrosine (for the (.)Mb-Fe-IV=O form, the g value was calculated to be 2.0057), and was accompanied by the formation of t-BuOOH-derived tert-butyl(per)oxyl radicals. We hypothesized that NO. may reduce both oxoferryl and apoprotein free radical electrophilic centers of (.)Mb-Fe-IV=O/(.)Hb-4Fe(IV)=O and eliminate tert-butyl(per)oxyl radicals, thus protecting against oxidative damage. We found that NO. reduced (.)Mb-Fe-IV=O/(.)Hb-4Fe(IV)=O to their respective ferric (met) forms and prevented the following: (i) oxidation of cis-parinaric acid (PnA) in liposomes, (ii) oxidation of luminol, and (iii) formation of the tert-butyl(per)oxyl adduct with the spin trap DMPO. NO. eliminated the signals of tyrosyl radical detected by ESR and oxoferryl detected by MS in the reaction of t-BuOOH with metMb. As evidenced by MS of apomyoglobin, this effect was due to the two-electron reduction of (.)Mb-Fe-IV=O by NO. at the oxoferryl center rather than to nitrosylation of the tyrosine residues. Results of our in vitro experiments suggest that NO. exhibits a patent, targetable antioxidant effect against oxidative damage produced by oxoferryl Mb/Hb.
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页码:6689 / 6699
页数:11
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