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首页> 外文期刊>The biochemical journal >Co-oxidation of NADH and NADPH by a mammalian 15-lipoxygenase: inhibition of lipoxygenase activity at near-physiological NADH concentrations
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Co-oxidation of NADH and NADPH by a mammalian 15-lipoxygenase: inhibition of lipoxygenase activity at near-physiological NADH concentrations

机译:哺乳动物15-脂氧合酶对NADH和NADPH的共氧化:在接近生理的NADH浓度下抑制脂氧合酶活性

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pThe purified 15-lipoxygenase from rabbit reticulocytes is capable of oxidizing NADH in the presence of linoleic acid and oxygen. This co-oxidation proceeds at a rate that amounts to approx. 7% of linoleic acid oxygenation rates. Although NADH inhibits the lipoxygenase reaction with linoleic acid as substrate (46% inhibition at 0.2 mM NADH), the reaction specificity of the enzyme was not altered since (13iS/i)-hydroperoxy-(9iZ/i,11iE/i)-octadecadienoic acid was identified as the major reaction product. NADH oxidation was inhibited by NADsup+/sup (uncompetitive with respect to linoleate and mixed/competitive with respect to NADH), and NADPH or NMNH could substitute for NADH with slightly different apparent iK/isubm/sub values. NADH oxidation was enhanced at lower oxygen tension, but was completely prevented under anaerobic conditions. Computer-assisted modelling of 15-lipoxygenase/NADH interaction and sequence alignments of mammalian lipoxygenases with NADH-dependent enzymes suggested that there is no specific binding of the coenzyme at the putative fatty acid-binding site of lipoxygenases. These results suggest that NAD(P)H might be oxidized by a radical intermediate formed during the dioxygenase cycle of the lipoxygenase reaction but that NADH oxidation might not proceed at the active site of the enzyme. The mechanism and possible biological consequences of 15-lipoxygenase-catalysed NAD(P)H oxidation are discussed./p
机译:>在兔亚油酸和氧气的存在下,纯化自兔网织红细胞的15-脂氧合酶能够氧化NADH。这种共氧化的速率大约为亚油酸的7%的氧合率。尽管NADH以亚油酸为底物抑制了脂氧合酶反应(在0.2nM NADH上抑制了46%),但是由于(13S)-氢过氧-(9 < i> Z ,11 E )-十八碳二烯酸被确定为主要反应产物。 NADH被NAD + 抑制(相对于亚油酸酯不竞争,相对于NADH而言混合/竞争),并且NADPH或NMNH可以替代表观 K 稍有不同的NADH。 m 个值。在较低的氧气压力下,NADH的氧化作用增强,但在厌氧条件下可完全防止。 15脂氧合酶/ NADH相互作用的计算机辅助建模以及哺乳动物脂氧合酶与NADH依赖性酶的序列比对表明,在脂氧合酶的假定脂肪酸结合位点上,辅酶没有特异性结合。这些结果表明,NAD(P)H可能被脂氧合酶反应的双氧合酶循环过程中形成的自由基中间体氧化,但NADH氧化可能不会在酶的活性位点进行。讨论了15-脂氧合酶催化NAD(P)H氧化的机理及其可能的生物学结果。

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