Pan Liping, Wen Zhimou, Baudry Jerome, Berenbaum May R, Schuler Mary A
Department of Cell and Structural Biology, University of Illinois, Urbana, IL 61801, USA.
Arch Biochem Biophys. 2004 Feb 1;422(1):31-41. doi: 10.1016/j.abb.2003.09.047.
The homology model of Papilio polyxenes CYP6B1 places Ile115, one of two variable amino acids, in the SRS1 of various CYP6B subfamily proteins in close proximity to the heme and Ala113, another variable amino acid, in a more distal position. We have constructed mutant CYP6B1 proteins altered at either of these positions and homology models of each based on multiple alignments with crystallized P450 proteins. The homology models suggest the existence of significant structural diversity in the hydrogen bond network surrounding the heme as a result of single point mutations in SRS1. Mutagenesis of Ile115 or Ala113 to other residues present in the insect CYP6B subfamily indicates that these amino acids control the spin state of the heme and, as a result, the catalytic activity of this monooxygenase. In particular, the I115L mutation significantly increases the spin state of the heme coordinately with 2- to 4-fold increases in its turnover of linear furanocoumarins. Other A113V, A113L, A113Q, and A113E mutations display more variation in their effects but, in each case, strong correlations exist between furanocoumarin turnover and heme spin state. These data demonstrate that variable amino acids in SRS1 of the insect CYP6B subfamily exert dramatic effects on the range of furanocoumarins metabolized, even when they occur in positions potentially distal from the substrate. These effects are possibly mediated through rearrangement of the local hydrogen bond network.
金凤蝶CYP6B1的同源模型显示,两个可变氨基酸之一的异亮氨酸115位于各种CYP6B亚家族蛋白的SRS1中,靠近血红素,而另一个可变氨基酸丙氨酸113则处于更远的位置。我们构建了在这两个位置之一发生改变的突变型CYP6B1蛋白,并根据与结晶P450蛋白的多重比对构建了每个蛋白的同源模型。同源模型表明,由于SRS1中的单点突变,血红素周围的氢键网络存在显著的结构多样性。将异亮氨酸115或丙氨酸113突变为昆虫CYP6B亚家族中存在的其他残基表明,这些氨基酸控制血红素的自旋状态,进而控制这种单加氧酶的催化活性。特别是,I115L突变显著增加了血红素的自旋状态,同时线性呋喃香豆素的周转增加了2至4倍。其他A113V、A113L、A113Q和A113E突变在其效应上表现出更多变化,但在每种情况下,呋喃香豆素周转与血红素自旋状态之间都存在强相关性。这些数据表明,昆虫CYP6B亚家族SRS1中的可变氨基酸对代谢的呋喃香豆素范围产生显著影响,即使它们出现在可能远离底物的位置。这些效应可能是通过局部氢键网络的重排介导的。