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Structural alterations of the heme environment of cytochrome P450cam and the Y96F mutant as deduced by resonance Raman spectroscopy

机译:共振拉曼光谱推断细胞色素P450cam和Y96F突变体血红素环境的结构变化

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Resonance Raman spectroscopy at 2.5 cm(-1) resolution was used to probe differences in wild-type and Y96F mutant P450cam (CYP101), both with and without bound camphor or styrene substrates. In the substrate-free state, the spin state equilibrium is shifted from 6-coordinate low spin (6CLS) toward more 5-coordinate high spin (5CHS) when tyrosine-96 in the substrate pocket is replaced by phenylalanine. About 25% of substrate-free Y96F mutant is 5CHS as opposed to 8% for substrate-free wild-type P450cam. Spin equilibrium constants calculated from Raman intensities indicate that the driving force for electron transfer from putidaredoxin, the natural redox partner of P450cam, is significantly smaller on styrene binding than for camphor binding. Spectral differences suggest that there is a tilt in camphor toward the pyrrole III ring on Y96F mutation. This finding is consistent with the altered product distribution found for camphor hydroxylation by the Y96F mutant relative to the single enantiomer produced by the wild-type enzyme. Published by Elsevier Science (USA). [References: 33]
机译:2.5 cm(-1)分辨率的共振拉曼光谱用于探测野生型和Y96F突变体P450cam(CYP101)的差异,无论有无樟脑或苯乙烯底物。在无底物状态下,当底物袋中的酪氨酸96被苯丙氨酸替代时,自旋态平衡从6坐标低自旋(6CLS)转变为5坐标高自旋(5CHS)。约25%的无底物Y96F突变体是5CHS,而无底物的野生型P450cam为8%。由拉曼强度计算出的自旋平衡常数表明,从P450cam的天然氧化还原配偶体Putidaredoxin进行电子转移的驱动力在苯乙烯结合方面比樟脑结合要小得多。光谱差异表明,在Y96F突变中,樟脑向吡咯III环倾斜。该发现与Y96F突变体相对于野生型酶产生的单个对映异构体的樟脑羟基化所发现的改变的产物分布相一致。由Elsevier Science(美国)出版。 [参考:33]

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