Datta Saumen, Ikeda Tokuji, Kano Kenji, Mathews F Scott
Washington University School of Medicine, St Louis, MO 63110, USA.
Acta Crystallogr D Biol Crystallogr. 2003 Sep;59(Pt 9):1551-6. doi: 10.1107/s090744490301429x. Epub 2003 Aug 19.
The 109 kDa quinohemoprotein amine dehydrogenase (QHNDH) from Paracoccus denitrificans contains a novel redox cofactor, cysteine tryptophylquinone (CTQ). This cofactor is derived from a pair of gene-encoded amino acids by post-translational modification and was previously identified and characterized within an 82-residue subunit by chemical methods and crystallographic analysis at 2.05 A resolution. It contains an orthoquinone moiety bound to the indole ring and catalyzes the oxidation of aliphatic and aromatic amines through formation of a Schiff-base intermediate involving one of the quinone O atoms. This paper reports the structural analysis of the complex of QHNDH with the enzyme inhibitor phenylhydrazine determined at 1.70 A resolution. The phenylhydrazone product is attached to the C6 position, identifying the O6 atom of CTQ as the site of Schiff-base formation as postulated by analogy to another amine-oxidizing enzyme, methylamine dehydrogenase. Furthermore, the inner N atom closest to the phenyl ring of phenylhydrazine forms a hydrogen bond to gammaAsp33 in the complex, lending support to the hypothesis that this residue serves as the active-site base for proton abstraction during catalysis.
反硝化副球菌中109 kDa的醌血红蛋白胺脱氢酶(QHNDH)含有一种新型氧化还原辅因子,半胱氨酸色氨酸醌(CTQ)。该辅因子由一对基因编码的氨基酸经翻译后修饰产生,此前已通过化学方法和2.05 Å分辨率的晶体学分析在一个82个残基的亚基中鉴定并表征。它含有一个与吲哚环结合的邻醌部分,通过形成涉及醌O原子之一的席夫碱中间体催化脂肪族和芳香族胺的氧化。本文报道了在1.70 Å分辨率下测定的QHNDH与酶抑制剂苯肼复合物的结构分析。苯腙产物连接在C6位置,确定CTQ的O6原子为席夫碱形成位点,这是通过与另一种胺氧化酶甲胺脱氢酶类比推测得出的。此外,在复合物中,最靠近苯肼苯环的内N原子与γAsp33形成氢键,支持了该残基在催化过程中作为质子提取活性位点碱的假设。