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Binding of 7-methoxy-4-(aminomethyl)-coumarin to wild-type and W128F mutant cytochrome P450 2D6 studied by time-resolved fluorescence spectroscopy

机译:时间分辨荧光光谱法研究7-甲氧基-4-(氨基甲基)-香豆素与野生型和W128F突变型细胞色素P450 2D6的结合

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摘要

Enzyme structure and dynamics may play a main role in substrate binding and the subsequent steps in the CYP (cytochrome P450) catalytic cycle. In the present study, changes in the structure of human CYP2D6 upon binding of the substrate are studied using steady-state and time-resolved fluorescence methods, focusing not only on the emission of the tryptophan residues, but also on emission of the substrate. As a substrate, MAMC [7-methoxy-4-(aminomethyl)-coumarin] was selected, a compound exhibiting native fluorescence. As well as the wild-type, the W128F (Trp128→Phe) mutant of CYP2D6 was studied. After binding, a variety of energy transfer possibilities exist, and molecular dynamics simulations were performed to calculate distances and relative orientations of donors and acceptors. Energy transfer from Trp128 to haem appeared to be important; its emission was related to the shortest of the three average tryptophan fluorescence lifetimes observed for CYP2D6. MAMC to haem energy transfer was very efficient as well: when bound in the active site, the emission of MAMC was fully quenched. Steady-state anisotropy revealed that besides the MAMC in the active site, another 2.4% of MAMC was bound outside of the active site to wild-type CYP2D6. The tryptophan residues in CYP2D6 appeared to be less accessible for the external quenchers iodide and acrylamide in presence of MAMC, indicating a tightening of the enzyme structure upon substrate binding. However, the changes in the overall enzyme structure were not very large, since the emission characteristics of the enzyme were not very different in the presence of MAMC.
机译:酶的结构和动力学可能在底物结合以及CYP(细胞色素P450)催化循环的后续步骤中起主要作用。在本研究中,使用稳态和时间分辨荧光方法研究了人CYP2D6与底物结合后结构的变化,不仅着眼于色氨酸残基的发射,还着眼于底物的发射。作为底物,选择了具有天然荧光的化合物MAMC [7-甲氧基-4-(氨基甲基)-香豆素]。除野生型外,还研究了CYP2D6的W128F(Trp 128 →Phe)突变体。结合后,存在多种能量转移的可能性,并且进行了分子动力学模拟以计算供体和受体的距离和相对取向。从Trp 128 到血红素的能量转移似乎很重要。其发射与CYP2D6的三个平均色氨酸荧光寿命中最短的寿命有关。用于血红素能量转移的MAMC也是非常有效的:当结合在活性位点时,MAMC的发射被完全淬灭。稳态各向异性表明,除了活性位点中的MAMC外,另外2.4%的MAMC在活性位点外与野生型CYP2D6结合。 CYP2D6中的色氨酸残基在存在MAMC的情况下对于外部淬灭剂碘化物和丙烯酰胺而言似乎不易接近,表明底物结合后酶结构的收紧。但是,由于在MAMC的存在下酶的发射特性差异不大,因此总体酶结构的变化不是很大。

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