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氨基脲敏感胺氧化酶的立体化学和辅因子身份状态

Stereochemistry and cofactor identity status of semicarbazide-sensitive amine oxidases.

作者信息

Palcic M M, Scaman C H, Alton G

机构信息

Department of Chemistry, University of Alberta, Edmonton, Canada.

出版信息

Prog Brain Res. 1995;106:41-7. doi: 10.1016/s0079-6123(08)61200-5.

Abstract

The relationship between the soluble copper topaquinone amine oxidases, the membrane bound semicarbazide-sensitive amine oxidases and lysyl oxidase remains unclear. The stereochemical course of substrate oxidation has been determined for each enzyme type and these studies suggest that SSAO and lysyl oxidase are closely related mechanistically, and that they are distinct from the copper amine oxidases. Both lysyl oxidase and SSAO catalyze the oxidation of tyramine with removal of the pro-S hydrogen from C-1 of this substrate. The copper amine oxidase enzymes that react with abstraction of the pro-S hydrogen from C-1 of substrates do not exhibit a solvent exchange pathway. In contrast, this exchange occurs in lysyl oxidase and SSAO reactions. The organic cofactor in all three enzyme types is a quinone; however, the spectral features of phenylhydrazine and p-nitrophenylhydrazine-derivatized SSAO differ from those reported for all known topaquinone-containing enzymes. Cofactor identification is further complicated by the lack of the characteristic topa motif, Asn-Tyr-Asp/Glu, in lysyl oxidase and the absence of any sequence information for SSAO.

摘要

可溶性铜对苯二酚胺氧化酶、膜结合氨基脲敏感胺氧化酶和赖氨酰氧化酶之间的关系仍不清楚。已确定了每种酶类型的底物氧化立体化学过程,这些研究表明,SSAO和赖氨酰氧化酶在机制上密切相关,且它们与铜胺氧化酶不同。赖氨酰氧化酶和SSAO都催化酪胺的氧化,并从该底物的C-1位去除前手性S氢。从底物的C-1位夺取前手性S氢的铜胺氧化酶不表现出溶剂交换途径。相反,这种交换发生在赖氨酰氧化酶和SSAO反应中。所有三种酶类型中的有机辅因子都是醌;然而,苯肼和对硝基苯肼衍生化的SSAO的光谱特征与所有已知含对苯二酚酶报道的光谱特征不同。由于赖氨酰氧化酶中缺乏特征性的对苯二酚基序Asn-Tyr-Asp/Glu,且SSAO没有任何序列信息,辅因子鉴定进一步复杂化。

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