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首页> 外文期刊>Biochemistry >C_60-Fullerene Monomalonate Adducts Selectively Inactivate Neuronal Nitric Oxide Synthase by Uncoupling the Formation of Reactive Oxygen Intermediates from Niric Oxide Production
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C_60-Fullerene Monomalonate Adducts Selectively Inactivate Neuronal Nitric Oxide Synthase by Uncoupling the Formation of Reactive Oxygen Intermediates from Niric Oxide Production

机译:C_60-富勒烯单丙二酸酯加合物通过解耦一氧化氮生产中活性氧中间体的形成来选择性灭活神经元一氧化氮合酶

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C6o-Fullerene monomalonate adducts inactivate selectively the neuronal nitric oxide synthase isoform in a manner completely preventable by the concurrent presence of superoxide dismutase and catalase. This inactivation is time-, fullerene concentration-, and turnover-dependent and is not reversible by dilution. The di(carboxypropan-3-ol)methano-[60]-fullerene (diol adduct) has no effect on NADPH consumption by nNOS as measured in the absence of arginine substrate, but dramatically increases NADPH consumption in the presence of arginine. This fullerene-enhanced NADPH consumption is linked to oxygen as electron acceptor and is accompanied by the increased production of hydrogen peroxide. These effects of fullerene monomalonate adducts are unique to the nNOS isoform and are not observed using either the iNOS or the eNOS isoform. The inhibitory effects of fullerene monomalonate adducts are unaltered and insurmountable by increased concentrations of arginine, tetrahydrobiopterin, or calmodulin. These observations indicate that fullerene monomalonate adducts uncouple in the presence of arginine the formation of reactive oxygen intermediates from NO production by nNOS. These reactive oxygen intermediates dissociate from the enzyme and, acting from solution, inactivate NOS NO forrnin~ activity.
机译:C 60-富勒烯单丙二酸酯加合物选择性地失活神经元一氧化氮合酶同工型,其方式可完全同时存在超氧化物歧化酶和过氧化氢酶来预防。这种失活是时间,富勒烯浓度和周转性的,并且不能通过稀释来逆转。如在不存在精氨酸底物的情况下测量,二(羧基丙烷-3-醇)亚甲基-[60]-富勒烯(二醇加合物)对nNOS的NADPH消耗没有影响,但是在存在精氨酸的情况下,NADPH消耗显着增加。这种富勒烯增强的NADPH消耗与作为电子受体的氧有关,并伴随着过氧化氢产量的增加。富勒烯单丙二酸酯加合物的这些作用是nNOS同种型所独有的,使用iNOS或eNOS同种型均未观察到。通过增加精氨酸,四氢生物蝶呤或钙调蛋白的浓度,富勒烯单丙二酸酯加合物的抑制作用没有改变并且无法克服。这些观察结果表明,在存在精氨酸的情况下,富勒烯单丙二酸酯加合物解偶联,由nNOS产生NO形成活性氧中间体。这些活性氧中间体从酶上解离,并从溶液中起作用,使NOS NO的活性失活。

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