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首页> 外文期刊>Free Radical Biology and Medicine: The Official Journal of the Oxygen Society >Inhibition of nitric oxide synthase by cobalamins and cobinamides.
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Inhibition of nitric oxide synthase by cobalamins and cobinamides.

机译:钴胺素和cobinamides对一氧化氮合酶的抑制作用。

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摘要

Cobalamins are important cofactors for methionine synthase and methylmalonyl-CoA mutase. Certain corrins also bind nitric oxide (NO), quenching its bioactivity. To determine if corrins would inhibit NO synthase (NOS), we measured their effects on -L-[(14)C]arginine-to-L-[(14)C]citrulline conversion by NOS1, NOS2, and NOS3. Hydroxocobalamin (OH-Cbl), cobinamide, and dicyanocobinamide (CN(2)-Cbi) potently inhibited all isoforms, whereas cyanocobalamin, methylcobalamin, and adenosylcobalamin had much less effect. OH-Cbl and CN(2)-Cbi prevented binding of the oxygen analog carbon monoxide (CO) to the reduced NOS1 and NOS2 heme active site. CN(2)-Cbi did not react directly with NO or CO. Spectral perturbation analysis showed that CN(2)-Cbi interacted directly with the purified NOS1 oxygenase domain. NOS inhibition by corrins was rapid and not reversed by dialysis with L-arginine or tetrahydrobiopterin. Molecular modeling indicated that corrins could access the unusually large heme- and substrate-binding pocket of NOS. Best fits were obtained in the "base-off" conformation of the lower axial dimethylbenzimidazole ligand. CN(2)-Cbi inhibited interferon-gamma-activated Raw264.7 mouse macrophage NO production. We show for the first time that certain corrins directly inhibit NOS, suggesting that these agents (or their derivatives) may have pharmacological utility. Endogenous cobalamins and cobinamides might play important roles in regulating NOS activity under normal and pathological conditions.
机译:钴胺素是蛋氨酸合酶和甲基丙二酰-CoA突变酶的重要辅助因子。某些柯林斯还结合一氧化氮(NO),从而淬灭其生物活性。为了确定柯林斯是否会抑制NO合酶(NOS),我们测量了它们对NOS1,NOS2和NOS3将-L-[(14)C]精氨酸转化为L-[(14)C]瓜氨酸的影响。羟钴胺素(OH-Cbl),cobinamide和dicyanocobinamide(CN(2)-Cbi)有效抑制所有同工型,而氰钴胺素,甲基钴胺素和腺苷钴胺素的作用要小得多。 OH-Cbl和CN(2)-Cbi阻止氧类似物一氧化碳(CO)与还原的NOS1和NOS2血红素活性位点结合。 CN(2)-Cbi不会直接与NO或CO反应。光谱扰动分析表明CN(2)-Cbi与纯化的NOS1加氧酶结构域直接相互作用。 Corrins对NOS的抑制作用很快,并且通过L-精氨酸或四氢生物蝶呤透析不能逆转。分子模型表明,corrins可以进入NOS异常大的血红素和底物结合口袋。在下部轴向二甲基二甲基苯并咪唑配体的“碱基”构象中获得了最佳拟合。 CN(2)-Cbi抑制干扰素-γ激活Raw264.7小鼠巨噬细胞NO生产。我们首次显示某些Corrins直接抑制NOS,表明这些药物(或其衍生物)可能具有药理作用。在正常和病理条件下,内源性钴胺素和钴胺可能在调节NOS活性中起重要作用。

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