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Antagonistic effects of hydrostatic pressure and osmotic pressure on cytochrome P-450cam spin transition.

机译:静水压力和渗透压对细胞色素P-450cam自旋转变的拮抗作用。

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摘要

The combined effects of hydrostatic pressure and osmotic pressure, generated by polyols, on the spin equilibrium of fenchone-bound cytochrome P-450cam were investigated. Hydrostatic pressure indices a high spin to low spin transition, whereas polyols induce the reversed reaction. Of the four solutes used, glycerol, glucose, stachyose, and sucrose, only the last two would act on the spin transition by osmotic stress. The spin volume changes measured by both techniques are different, 29 and -350 ml/mol for hydrostatic pressure and osmotic pressure, respectively. It suggests that even if the two are perturbing water molecules, different properties are probed. From the volume change induced by osmotic stress, 19 water molecules are deduced that would be implicated in the spin transition of the fenchone-bound protein. This result suggests that water molecules other than the well defined ones located in the active site play a key role in modulating the spin equilibrium of cytochrome P-450cam.
机译:研究了由多元醇产生的静水压力和渗透压对受孕酮结合的细胞色素P-450cam的自旋平衡的影响。静水压力指示高自旋向低自旋转变,而多元醇则引起逆反应。在所使用的四种溶质中,甘油,葡萄糖,水苏糖和蔗糖中,只有后两种会因渗透压而作用于自旋转变。两种技术测得的旋转体积变化是不同的,静水压和渗透压分别为29和-350 ml / mol。这表明,即使两者干扰了水分子,也会探测到不同的性质。从渗透压引起的体积变化中,推断出19个水分子,这些水分子与结合了Fenchone的蛋白质的自旋转变有关。该结果表明,位于活性位点的水分子不同于定义良好的水分子,在调节细胞色素P-450cam的自旋平衡中起关键作用。

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