Modi S, Primrose W U, Boyle J M, Gibson C F, Lian L Y, Roberts G C
Department of Biochemistry, University of Leicester, U.K.
Biochemistry. 1995 Jul 18;34(28):8982-8. doi: 10.1021/bi00028a006.
The binding of the substrates sodium laurate and sodium 12-bromolaurate to the heme-containing domain of Bacillus megaterium cytochrome P450 BM3 (CYP102) has been studied by measurement of the relaxation effects of the unpaired electrons of the heme iron on the protons of water and of the bound substrates. Substrate binding leads to a conversion of the heme iron from a low-spin to a high-spin state, as shown by changes in the optical spectrum. The relaxation measurements show that this is accompanied by expulsion of water from the sixth coordination position of the iron, the distance between the iron and the water protons increasing from 2.6 to 5.2 A. Corresponding relaxation measurements on the substrate protons lead to the determination of a number of distances between the iron and protons of the bound substrate and, hence, to information on the position and orientation of the substrate in the binding site. Laurate and 12-bromolaurate are found to bind in a very similar way, in an extended conformation with the carboxylate probably close to Arg47 and the other end of the chain 7.6-7.8 A from the heme iron. It is shown that laurate and pyridine can bind simultaneously to the P450 domain and that the iron-laurate distances in this ternary complex are not significantly different from those in the binary complex. These observations are compared with those on the substrate complex of cytochrome P450 cam, and their implications for structural changes involved in the catalytic cycle are discussed.
通过测量血红素铁的未成对电子对水和结合底物的质子的弛豫效应,研究了月桂酸钠和12-溴月桂酸钠这两种底物与巨大芽孢杆菌细胞色素P450 BM3(CYP102)的含血红素结构域的结合情况。如光谱变化所示,底物结合导致血红素铁从低自旋态转变为高自旋态。弛豫测量表明,这伴随着铁的第六配位位置上的水被排出,铁与水质子之间的距离从2.6埃增加到5.2埃。对底物质子进行相应的弛豫测量,可确定铁与结合底物的质子之间的一些距离,从而获得有关底物在结合位点中的位置和取向的信息。发现月桂酸和12-溴月桂酸以非常相似的方式结合,呈伸展构象,羧酸盐可能靠近Arg47,链的另一端距血红素铁7.6 - 7.8埃。结果表明,月桂酸和吡啶可以同时结合到P450结构域,并且在这种三元复合物中铁-月桂酸的距离与二元复合物中的距离没有显著差异。将这些观察结果与细胞色素P450 cam的底物复合物的观察结果进行比较,并讨论了它们对催化循环中涉及的结构变化的影响。