Deprez E, Gerber N C, Di Primo C, Douzou P, Sligar S G, Hui Bon Hoa G
INSERM-INRA U310, Institut de Biologie Physico-Chimique, Paris, France.
Biochemistry. 1994 Dec 6;33(48):14464-8. doi: 10.1021/bi00252a012.
Camphor binding to ferric cytochrome P-450cam is a two-step process. The first step corresponds to the diffusion of camphor into the heme pocket, and the second one corresponds to an observable spin transition of the heme iron. In this paper, electrostatic interactions that may control the opening of the structure to allow substrate access to the buried and not solvent-exposed active site were examined. The electrostatic interactions occurring at the protein surface were weakened by increasing the ionic strength of the medium with sodium salts and strengthened by decreasing the dielectric constant of the medium with ethylene glycol as a cosolvent. The results obtained with the wild-type protein were compared to those obtained with the site-directed mutant of cytochrome P-450cam in which the Arg 186-Asp 251 and Lys 178-Asp 251 salt bridges, located at the entrance of the proposed access channel, were suppressed by replacing Asp 251 with an asparagine residue. Over a range of sodium chloride concentrations from 0 to 400 mM, camphor binding is favored, as seen in the variation in the first step dissociation equilibrium constant, K1d, which decreases from 49.5 to 24 microM, respectively. Addition of ethylene glycol favors the dissociation of the substrate-bound complex. The addition of sodium to the ethylene glycol-containing samples reverses the effect of the cosolvent. Removal of the Arg 186-Asp 251 and Lys 178-Asp 251 salt bridges results in an alteration in camphor binding in which K1d is equal to 34 microM without sodium.(ABSTRACT TRUNCATED AT 250 WORDS)
樟脑与铁细胞色素P-450cam的结合是一个两步过程。第一步对应于樟脑扩散到血红素口袋中,第二步对应于血红素铁可观察到的自旋转变。在本文中,研究了可能控制结构开放以允许底物进入埋藏且不暴露于溶剂的活性位点的静电相互作用。通过用钠盐增加介质的离子强度来减弱在蛋白质表面发生的静电相互作用,并用乙二醇作为共溶剂降低介质的介电常数来增强静电相互作用。将野生型蛋白质得到的结果与细胞色素P-450cam定点突变体得到的结果进行比较,在该突变体中,位于提议的通道入口处的Arg 186-Asp 251和Lys 178-Asp 251盐桥通过用天冬酰胺残基取代Asp 251而被抑制。在0至400 mM的一系列氯化钠浓度范围内,樟脑结合受到促进,如第一步解离平衡常数K1d的变化所示,其分别从49.5降至24 μM。添加乙二醇有利于底物结合复合物的解离。向含乙二醇的样品中添加钠会逆转共溶剂的作用。去除Arg 186-Asp 251和Lys 178-Asp 251盐桥会导致樟脑结合发生改变,其中在没有钠的情况下K1d等于34 μM。(摘要截短于250字)