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Nitroxyl (NO-): a substrate for superoxide dismutase

机译:硝基(NO-):超氧化物歧化酶的底物

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The interactions of Cu, Zn superoxide dismutase (SOD) with nitroxyl (NO-) and nitric oxide (NO), both of which are thought to be biologically significant, have been studied but remain undefined. Having previously noted that NO- can reduce Cu (II), Zn SOD aerobically, we now report that it also can do so anaerobically and that Cu, Zn SOD can catalyze the elimination of NO- in the absence of O-2 NO- acts as a reductant of ferricytochrome c anaerobically, but in the presence ofO(2), causes the oxidation of ferrocytochrome c and NADPH. Equivalent fluxes of NO-, and NO + O-2(-), were able to comparably oxidize NADPH, but the oxidation by NO + 02 was more than fivefold more sensitive to inhibition by Cu, Zn SOD than was the oxidation by NO-. Thus Cu, Zn SOD inhibited NADPH oxidation by NO- by a route independent of catalyzing the dismutation of O-2(-). Plausible mechanisms for those observations are offered and rate constants are estimated. (C) 2002 Elsevier Science (USA). All rights reserved. [References: 23]
机译:铜,锌超氧化物歧化酶(SOD)与硝酰基(NO-)和一氧化氮(NO)的相互作用均被认为具有生物学意义,目前已进行了研究,但仍不确定。先前已经指出NO-可以好氧地还原Cu(II),Zn SOD,我们现在报道它也可以厌氧地还原,并且在没有O-2 NO-的情况下Cu,Zn SOD可以催化NO-的消除。作为厌氧亚铁色素c的还原剂,但在O(2)存在下,会引起亚铁色素c和NADPH的氧化。 NO-和NO + O-2(-)的等效通量能够相当程度地氧化NADPH,但NO + 02的氧化敏感性对Cu,Zn SOD的抑制作用比NO-氧化的敏感性高五倍以上。 。因此,铜,锌超氧化物歧化酶通过独立于催化O-2(-)歧化的途径抑制NO-引起的NADPH氧化。提供了那些观察的合理机制,并估计了速率常数。 (C)2002 Elsevier Science(美国)。版权所有。 [参考:23]

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