炎症中的钴胺素III -谷胱甘肽钴胺素和甲基钴胺素/腺苷钴胺素辅酶:石中剑?钴胺素如何直接调节一氧化氮合酶。

Carmen Wheatley
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引用次数: 12

摘要

围绕一氧化氮合酶(NOS)的结构和功能有几个未解之谜。NOS加氧酶结构域异常开放,有大面积的溶剂可以容纳未知的配体。精氨酸二步五电子单氧化生成N(G)-羟基- l -精氨酸,进而生成瓜氨酸和一氧化氮(NO)的确切机制尚不清楚,特别是精氨酸/N(G)-羟基- l -精氨酸与作为反立体异构体的所谓催化血红素Fe [III]结合距离很远。本文提出,钴胺素是NOS的主要间接调节因子,而谷胱甘肽基钴胺素(GSCbl)的“碱基”二甲基苯并咪唑可能作为血红素铁的第六配体,促进co取向的BH(4)/BH(3)自由基催化l -精氨酸氧化为NO,并可能调节NOS二聚体诱导NOS/NO生成的速率。NOS与蛋氨酸合成酶/甲基丙二酰辅酶a变化酶之间不存在同源性,这可能使GSCbl通过完全不同的机制同时调节这两组酶。因此,钴胺素可能对促炎系统和抗炎系统都起到中枢控制作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Cobalamin in inflammation III - glutathionylcobalamin and methylcobalamin/adenosylcobalamin coenzymes: the sword in the stone? How cobalamin may directly regulate the nitric oxide synthases.

Several mysteries surround the structure and function of the nitric oxide synthases (NOS). The NOS oxygenase domain structure is unusually open with a large area of solvent that could accommodate an unidentified ligand. The exact mechanism of the two-step five-electron monoxygenation of arginine to N(G)-hydroxy-L-arginine, thence to citrulline and nitric oxide (NO), is not clear, particularly as arginine/N(G)-hydroxy-L-arginine is bound at a great distance to the supposed catalytic heme Fe [III], as the anti-stereoisomer. The Return of the Scarlet Pimpernel Paper proposed that cobalamin is a primary indirect regulator of the NOS. An additional direct regulatory effect of the 'base-off' dimethylbenzimidazole of glutathionylcobalamin (GSCbl), which may act as a sixth ligand to the heme iron, promote Co-oriented, BH(4)/BH(3) radical catalysed oxidation of L-arginine to NO, and possibly regulate the rate of inducible NOS/NO production by the NOS dimers, is further advanced. The absence of homology between the NOS and methionine synthase/methylmalonyl CoA mutase may enable GSCbl to regulate both sets of enzymes simultaneously by completely separate mechanisms. Thus, cobalamin may exert central control over both pro-and anti-inflammatory systems.

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