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镰状红细胞的脱氧作用会刺激氯化钾协同转运,而不影响钠氢交换。

Deoxygenation of sickle red blood cells stimulates KCl cotransport without affecting Na+/H+ exchange.

作者信息

Joiner C H, Jiang M, Fathallah H, Giraud F, Franco R S

机构信息

Cincinnati Comprehensive Sickle Cell Center, University of Cincinnati College of Medicine, Ohio 45229-3039, USA.

出版信息

Am J Physiol. 1998 Jun;274(6):C1466-75. doi: 10.1152/ajpcell.1998.274.6.C1466.

Abstract

KCl cotransport activated by swelling of sickle red blood cells (SS RBC)is inhibited by deoxygenation. Yet recent studies found a Cl--dependent increase in sickle reticulocyte density with cyclic deoxygenation. This study sought to demonstrate cotransporter stimulation by deoxygenation of SS RBC in isotonic media with normal pH. Low-density SS RBC exhibited a Cl--dependent component of the deoxygenation-induced net K+ efflux, which was blocked by two inhibitors of KCl cotransport, [(dihydroindenyl)oxy]alkanoic acid and okadaic acid. Cl--dependent K+ efflux stimulated by deoxygenation was enhanced 2.5-fold by clamping of cellular Mg2+ at the level in oxygenated cells using ionophore A-23187. Incubating cells in high external K+ or Rb+ minimized inhibition of KCl cotransport by internal Mg2+, and under these conditions deoxygenation markedly stimulated KCl cotransport in the absence of ionophore. Activation of KCl cotransport by deoxygenation of SS RBC in isotonic media at normal pH is consistent with the generalized dephosphorylation of membrane proteins induced by deoxygenation and activation of the cotransporter by a dephosphorylation mechanism. Na+/H+ exchange activity, known to be modulated by cytosolic Ca2+ elevation and cell shrinkage, remained silent under deoxygenation conditions.

摘要

镰状红细胞(SS RBC)肿胀激活的KCl协同转运受脱氧作用抑制。然而,最近的研究发现,随着周期性脱氧,镰状网织红细胞密度会出现Cl-依赖性增加。本研究旨在证明在等渗介质且pH正常的情况下,脱氧作用对SS RBC协同转运体的刺激作用。低密度SS RBC表现出脱氧诱导的净K+外流的Cl-依赖性成分,该成分被两种KCl协同转运抑制剂,即[(二氢茚基)氧基]链烷酸和冈田酸所阻断。使用离子载体A-23187将细胞Mg2+钳制在氧合细胞水平,可使脱氧刺激的Cl-依赖性K+外流增强2.5倍。在高细胞外K+或Rb+中孵育细胞可最大程度减少内部Mg2+对KCl协同转运的抑制,在这些条件下,脱氧作用在无离子载体时可显著刺激KCl协同转运。在正常pH的等渗介质中,脱氧作用激活SS RBC的KCl协同转运,这与脱氧诱导的膜蛋白普遍去磷酸化以及通过去磷酸化机制激活协同转运体是一致的。已知受胞质Ca2+升高和细胞收缩调节的Na+/H+交换活性在脱氧条件下保持沉默。

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