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首页> 外文期刊>Biochemistry >Dynamics of protein-bound water in the heme domain of P450BM3 studied by high-pressure spectroscopy: comparison with P450cam and P450 2B4.
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Dynamics of protein-bound water in the heme domain of P450BM3 studied by high-pressure spectroscopy: comparison with P450cam and P450 2B4.

机译:高压光谱法研究P450BM3血红素域中结合蛋白质的水动力学:与P450cam和P450 2B4的比较。

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摘要

Pressure-induced transitions in the heme domain of cytochrome P450BM3 (P450BMP) were studied versus the concentration of palmitic acid. An increase in hydrostatic pressure causes a high- to low-spin shift and subsequent P450 to P420 transition. Conversion of P450BMP to P420 is associated with important conformational and hydration changes of the protein. Treating the pressure-induced changes in the high-spin content in P450 in terms of the four-state model of spin transitions and substrate binding, we evaluated and compared the barotropic parameters of these transitions for P450MBP, P450cam, and P450 2B4 (2B4). In the current study, the pressure-induced transitions in P450cam were reinvestigated versus the concentration of camphor. The interactions of 2B4 and P450BMP with their substrates (benzphetamine and palmitic acid) were accompanied by larger changes in the partial volume of the proteins (+267 and +248 mL/mol, respectively) than the interactions of P450cam with camphor (+106 mL/mol). For 2B4 and P450BMP, substrate binding apparently requires hydration of regions outside the active site. The reaction volumes of the low- to high-spin transitions of the substrate-free cytochromes (20-23 mL/mol) are consistent with the displacement of one water molecule. The volume changes in the high- to low-spin transition of the substrate-bound P450cam, 2B4, and P450BMP (-90, -49, and -16 mL/mol correspondingly) reveal a linear relationship with DeltaG degrees of the spin transition, suggesting that modulation of the spin state by substrate binding is driven by a common mechanism in all three heme proteins.
机译:研究了压力引起的细胞色素P450BM3(P450BMP)血红素结构域转变与棕榈酸浓度的关系。静水压力的增加会导致高自旋换挡和随后的P450至P420过渡。 P450BMP向P420的转化与蛋白质的重要​​构象和水合变化有关。根据自旋转变和底物结合的四态模型处理P450中高旋转含量的压力诱导变化,我们评估并比较了P450MBP,P450cam和P450 2B4(2B4)的这些转变的正压参数。 。在当前的研究中,相对于樟脑的浓度,重新研究了P450cam中压力诱导的转变。 2B4和P450BMP与底物(苯丙胺和棕榈酸)的相互作用比P450cam与樟脑(+106 mL)的相互作用具有更大的蛋白质部分体积变化(分别为+267和+248 mL / mol)。 / mol)。对于2B4和P450BMP,底物的结合显然需要水合活性位点以外的区域。无底物的细胞色素从低到高自旋转变的反应体积(20-23 mL / mol)与一个水分子的置换一致。与底物结合的P450cam,2B4和P450BMP从高到低自旋转变的体积变化(分别为-90,-49和-16 mL / mol)显示出与自旋转变的DeltaG度呈线性关系,提示底物结合对自旋态的调节是由所有三种血红素蛋白的共同机制驱动的。

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