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2,3-二磷酸甘油酸和细胞内pH作为脱氧血红蛋白S生理溶解度的相互依存决定因素。

2,3-Diphosphoglycerate and intracellular pH as interdependent determinants of the physiologic solubility of deoxyhemoglobin S.

作者信息

Poillon W N, Kim B C

机构信息

Center for Sickle Cell Disease, Howard University, Washington, DC 20059.

出版信息

Blood. 1990 Sep 1;76(5):1028-36.

PMID:2393711
Abstract

We have established that 2,3-diphosphoglycerate (2,3-DPG) content and intracellular pH exert separate, but interdependent, effects on the equilibrium solubility (csat) of deoxyhemoglobin S (deoxy-Hb S) that act in concert to modulate intraerythrocytic polymer formation. In a nonphysiologic csat assay system, a steep dependence of csat on pH in the physiologic range 7.0 to 7.6 was shown for both stripped (Hb) and DPG-saturated deoxy-Hb S (Hb-DPG). The solubility-pH profile for Hb under near-physiologic buffer conditions also showed that csat increased steeply in the same pH range (6.8 to 7.6). The effect of 2,3-DPG on csat under near-physiologic conditions was evaluated separately. At pH 7.20, the pH of the human red blood cell, csat values for Hb and Hb-DPG were 19.56 +/- 0.14 and 17.95 +/- 0.45 g/dL, respectively, indicating that the solubility of Hb-DPG is lower than that of Hb by 8.2% +/- 2.3%. Thus, binding of 2,3-DPG in the beta-cleft promotes the polymerization of deoxy-Hb S, the ultimate determinant of cell sickling. Furthermore, because of the abnormal Bohr effect of sickle blood (approximately double that of normal blood), the intracellular pH of deoxygenated sickle erythrocytes should be approximately 0.28 pH unit higher than that of oxygenated cells (ie, 7.41 v 7.13). At the higher pH, the corresponding csat for Hb-DPG is 20.22 g/dL, which is the best estimate of the intrinsic solubility of T-state Hb S under conditions that approximate closely those of pH, temperature, ionic strength, and 2,3-DPG saturation in the fully desaturated sickle erythrocyte.

摘要

我们已经确定,2,3-二磷酸甘油酸(2,3-DPG)含量和细胞内pH值对脱氧血红蛋白S(deoxy-Hb S)的平衡溶解度(csat)具有各自独立但相互依存的影响,二者共同作用以调节红细胞内聚合物的形成。在一个非生理性csat测定系统中,对于脱辅基血红蛋白(Hb)和DPG饱和的脱氧-Hb S(Hb-DPG),在7.0至7.6的生理范围内,csat对pH呈陡峭的依赖性。在接近生理缓冲条件下,Hb的溶解度-pH曲线也表明,在相同的pH范围(6.8至7.6)内,csat急剧增加。分别评估了在接近生理条件下2,3-DPG对csat的影响。在人类红细胞的pH值7.20时,Hb和Hb-DPG的csat值分别为19.56±0.14和17.95±0.45 g/dL,这表明Hb-DPG的溶解度比Hb低8.2%±2.3%。因此,2,3-DPG在β-裂隙中的结合促进了脱氧-Hb S的聚合,而脱氧-Hb S是细胞镰变的最终决定因素。此外,由于镰状血液的异常玻尔效应(约为正常血液的两倍),脱氧镰状红细胞的细胞内pH值应比氧合细胞高约0.28个pH单位(即7.41对7.13)。在较高的pH值下,Hb-DPG的相应csat为20.22 g/dL,这是在接近完全脱饱和镰状红细胞的pH、温度、离子强度和2,3-DPG饱和度条件下,对T态Hb S固有溶解度的最佳估计。

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