Davydov Dmitri R, Botchkareva Alexandra E, Kumar Santosh, He You Qun, Halpert James R
Department of Pharmacology and Toxicology, The University of Texas Medical Branch, Galveston, Texas 77555-1031, USA.
Biochemistry. 2004 Jun 1;43(21):6475-85. doi: 10.1021/bi036260l.
The effect of ionic strength (I) on substrate-induced spin transitions and cooperativity in cytochrome P450eryF was studied. At a saturating concentration of 1-pyrenebutanol (1-PB) increasing ionic strength in the 0.06-1.2 M range promotes the formation of the high-spin state of P450, which fraction increases from 26% at 0.06 M to 75% at 1.2 M. This effect was associated with a considerable decrease in cooperativity as revealed in the 1-PB-induced spin shift. While P450eryF exhibits distinct positive cooperativity (S(50) = 8.3 microM, n = 2.4) with this substrate at low ionic strength (I = 0.06 M), n decreases to 1.2 (S(50) = 3.2 microM) at I = 0.66 M. Increasing ionic strength also increases the distance between the first (effector) molecule of 1-PB and the heme, as detected by the changes in the efficiency of FRET from 1-PB to the heme. The modification of Cys(154) with 7-(diethylamino)-3-(4'-maleimidylphenyl)-4-methylcoumarin (CPM) largely suppresses these effects of ionic strength and causes a prominent decrease in the cooperativity. The same effect was observed when Cys(154) was substituted with isoleucine. Importantly, Cys(154) is located at the C-terminal end of helix E and is surrounded by salt bridges formed by arginine, glutamate, and aspartate residues located in helices D, E, F, and G. Our results suggest that the binding of the first substrate molecule causes an important conformational transition in the P450eryF that facilitates the substrate-induced spin shift. This transition is apparently accompanied by dissociation or rearrangement of several salt bridges in the proximity of Cys(154) and modulates accessibility and hydration of the heme pocket.
研究了离子强度(I)对细胞色素P450eryF中底物诱导的自旋转变和协同性的影响。在1-芘丁醇(1-PB)饱和浓度下,离子强度在0.06 - 1.2 M范围内增加时,会促进P450高自旋态的形成,其比例从0.06 M时的26%增加到1.2 M时的75%。如1-PB诱导的自旋位移所示,这种效应与协同性的显著降低有关。在低离子强度(I = 0.06 M)下,P450eryF与该底物表现出明显的正协同性(S(50) = 8.3 microM,n = 2.4),而在I = 0.66 M时,n降至1.2(S(50) = 3.2 microM)。离子强度增加还会增加1-PB的第一个(效应物)分子与血红素之间的距离,这可通过从1-PB到血红素的荧光共振能量转移效率的变化检测到。用7-(二乙氨基)-3-(4'-马来酰亚胺基苯基)-4-甲基香豆素(CPM)修饰半胱氨酸(Cys)154,在很大程度上抑制了离子强度的这些效应,并导致协同性显著降低。当半胱氨酸(Cys)154被异亮氨酸取代时,也观察到了相同的效果。重要的是,半胱氨酸(Cys)154位于螺旋E的C末端,被位于螺旋D、E、F和G中的精氨酸、谷氨酸和天冬氨酸残基形成的盐桥所包围。我们的结果表明,第一个底物分子的结合会在P450eryF中引起重要的构象转变,从而促进底物诱导的自旋位移。这种转变显然伴随着半胱氨酸(Cys)154附近几个盐桥的解离或重排,并调节血红素口袋的可及性和水合作用。