首页> 外文期刊>Biochemistry >Reduction of ferrylmyoglobin and ferrylhemoglobin by nitric oxide: a protective mechanism against ferryl hemoprotein-induced oxidations.
【24h】

Reduction of ferrylmyoglobin and ferrylhemoglobin by nitric oxide: a protective mechanism against ferryl hemoprotein-induced oxidations.

机译:一氧化氮还原亚铁血红蛋白和亚铁血红蛋白:对亚铁血红蛋白诱导的氧化的保护机制。

获取原文
获取原文并翻译 | 示例
       

摘要

The reactions of metmyoglobin (metMb) and methemoglobin (metHb), oxidized to their respective oxoferryl free radical species (.Mb-FeIV = O/.Hb-4FeIV = 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-FeIV = O/.Hb-4FeIV = 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-FeIV = 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-FeIV = O/.Hb-4FeIV = O and eliminate tert-butyl(per)oxyl radicals, thus protecting against oxidative damage. We found that NO. reduced .Mb-FeIV = O/.Hb-4FeIV = 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-FeIV = 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 potent, targetable antioxidant effect against oxidative damage produced by oxoferryl Mb/Hb.
机译:氢过氧化叔丁基醚(t-BuOOH)氧化成高铁血红蛋白(metMb)和高铁血红蛋白(metHb)的反应,使其氧化成各自的氧氟苯氧自由基种类(.Mb-FeIV = O / .Hb-4FeIV = O)通过结合光学,电子自旋共振(ESR),离子喷雾质量(MS),荧光和化学发光光谱法研究(NO。),以深入了解NO的机理。可以防止由.Mb-FeIV = O / .Hb-4FeIV = O产生的氧化损伤。在氮气氛中,t-BuOOH对metMb / metHb的氧化过程是通过形成两个蛋白质亲电子中心进行的,这两个蛋白质亲电子中心分别是血红素氧肟基和载脂蛋白自由基以酪氨酸为中心(对于.Mb-FeIV = O形式,g值经计算为2.0057),并伴随有t-BuOOH衍生的叔丁基(全)氧基自由基的形成。我们假设没有。可能同时降低oxoferryl和载脂蛋白的自由基亲电子中心。Mb-FeIV= O / .Hb-4FeIV = O,并消除叔丁基(全)氧基,从而防止氧化损伤。我们发现没有。 Mb-FeIV = O / .Hb-4FeIV = O还原成其各自的三价铁(met)形式并防止了以下行为:(i)脂质体中顺式偏叶酸(PnA)的氧化;(ii)鲁米诺的氧化;以及(iii)用自旋阱DMPO形成叔丁基(全)氧基加合物。没有。消除了t-BuOOH与metMb反应中ESR检测到的酪氨酰自由基信号和MS检测到的草酰氧的信号。质谱表明,这种作用是由于NO引起的.Mb-FeIV = O的两电子还原。而不是酪氨酸残基的亚硝基化。我们的体外实验结果表明没有。对oxoferryl Mb / Hb产生的氧化损伤具有有效的,可靶向的抗氧化作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号