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流体静压力对配体与血红蛋白结合的影响。

Effect of hydrostatic pressure on ligand binding to hemoglobin.

作者信息

Carey F G, Knowles F, Gibson Q H

出版信息

J Biol Chem. 1977 Jun 25;252(12):4102-7.

PMID:16924
Abstract

Increase in hydrostatic pressure to 1000 atm increased the affinity of human and menhaden (Brevoortia tyrannus) hemoglobins for oxygen. With necessary assumptions about the form of the equilibrium curve, and after correction for changes in pH and volume due to pressure, the increase in affinity is about 2-fold for both hemoglobins. At pH 6.5, Hill's n for menhaden hemoglobin is near 1, and it is believed to remain in the T state, whereas human hemoglobin undergoes a T to R transition. This suggests that the R-T equilibrium is not disturbed by pressure. In direct experiments the binding of a fluorescent effector (8 hydroxy-1,3,6-pyrene (trisulfonic acid) to deoxyhemoglobin was not changed by pressure. The binding of n-butylisocyanide to hemoglobin and to myoglobin is also greater at high pressures, similarly suggesting that the R-T transition is not involved in the pressure effect.

摘要

将流体静压力增加到1000个大气压会增加人类血红蛋白和鲱鱼油血红蛋白(Brevoortia tyrannus)对氧气的亲和力。在对平衡曲线的形式做出必要假设,并校正由于压力导致的pH值和体积变化后,两种血红蛋白的亲和力增加约2倍。在pH 6.5时,鲱鱼油血红蛋白的希尔系数n接近1,据信它仍处于T态,而人类血红蛋白则经历从T态到R态的转变。这表明R-T平衡不受压力干扰。在直接实验中,荧光效应物(8-羟基-1,3,6-芘三磺酸)与脱氧血红蛋白的结合不受压力影响。正丁基异氰化物与血红蛋白和肌红蛋白的结合在高压下也更强,同样表明R-T转变与压力效应无关。

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