Oshima Rieko, Fushinobu Shinya, Su Fei, Zhang Li, Takaya Naoki, Shoun Hirofumi
Department of Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, 113-8657, Japan.
J Mol Biol. 2004 Sep 3;342(1):207-17. doi: 10.1016/j.jmb.2004.07.009.
Nitric oxide reductase cytochrome P450nor catalyzes an unusual reaction, direct electron transfer from NAD(P)H to bound heme. Here, we succeeded in determining the crystal structure of P450nor in a complex with an NADH analogue, nicotinic acid adenine dinucleotide, which provides conclusive evidence for the mechanism of the unprecedented electron transfer. Comparison of the structure with those of dinucleotide-free forms revealed a global conformational change accompanied by intriguing local movements caused by the binding of the pyridine nucleotide. Arg64 and Arg174 fix the pyrophosphate moiety upon the dinucleotide binding. Stereo-selective hydride transfer from NADH to NO-bound heme was suggested from the structure, the nicotinic acid ring being fixed near the heme by the conserved Thr residue in the I-helix and the upward-shifted propionate side-chain of the heme. A proton channel near the NADH channel is formed upon the dinucleotide binding, which should direct continuous transfer of the hydride and proton. A salt-bridge network (Glu71-Arg64-Asp88) was shown to be crucial for a high catalytic turnover.
一氧化氮还原酶细胞色素P450nor催化一种不同寻常的反应,即从NAD(P)H直接向结合的血红素进行电子转移。在此,我们成功确定了P450nor与NADH类似物烟酰胺腺嘌呤二核苷酸形成的复合物的晶体结构,这为这种前所未有的电子转移机制提供了确凿证据。将该结构与无二核苷酸形式的结构进行比较,发现了一种整体构象变化,同时伴随着由吡啶核苷酸结合引起的有趣局部运动。精氨酸64和精氨酸174在二核苷酸结合时固定焦磷酸部分。从结构上推测存在从NADH到结合NO的血红素的立体选择性氢化物转移,烟酰胺环通过I-螺旋中保守的苏氨酸残基和血红素向上移动的丙酸侧链固定在血红素附近。二核苷酸结合时在NADH通道附近形成一个质子通道,该通道应引导氢化物和质子的连续转移。盐桥网络(谷氨酸71-精氨酸64-天冬氨酸88)被证明对高催化周转率至关重要。