Fedorov Roman, Ghosh Dipak K, Schlichting Ilme
Abt. Biophysikalische Chemie, Max Planck Institut für Molekulare Physiologie, Otto Hahn Strasse 11, 44227 Dortmund, Germany.
Arch Biochem Biophys. 2003 Jan 1;409(1):25-31. doi: 10.1016/s0003-9861(02)00555-6.
The crystal structure of the ternary cyanide complex of P450cam and camphor was determined to 1.8A resolution and found to be identical with the structure of the active oxygen complex [I. Schlichting et al., 2000, Science 287, 1615]. Notably, cyanide binds in a bent mode and induces the active conformation that is characterized by the presence of two water molecules and a flip of the carbonyl of the conserved Asp251. The structure of the ternary complex of cyanide, L-arginine, and the oxygenase domain of inducible nitric oxide synthase was determined to 2.4A resolution. Cyanide binds essentially linearly, interacts with L-Arg, and induces the binding of a water molecule at the active site. This water is positioned by backbone interactions, located 2.8A from the nitrogen atom of cyanide, and could provide a proton required for O-O bond scission in the hydroxylation reaction of nitric oxide synthase.
细胞色素P450cam与樟脑的三元氰化物配合物的晶体结构被测定至1.8埃分辨率,发现其与活性氧配合物的结构相同[I. 施利希廷等人,2000年,《科学》287卷,1615页]。值得注意的是,氰化物以弯曲模式结合,并诱导出以存在两个水分子和保守的天冬氨酸251的羰基翻转特征的活性构象。氰化物、L-精氨酸与诱导型一氧化氮合酶加氧酶结构域的三元配合物的结构被测定至2.4埃分辨率。氰化物基本呈线性结合,与L-精氨酸相互作用,并诱导一个水分子在活性位点结合。这个水分子通过主链相互作用定位,距离氰化物的氮原子2.8埃,并且可以为一氧化氮合酶羟基化反应中O-O键断裂提供所需的质子。