Zade-Oppen A M, Lauf P K
Department of Physiology and Biophysics, Wright State University, School of Medicine, Dayton, Ohio 45401-0927.
J Membr Biol. 1990 Nov;118(2):143-51. doi: 10.1007/BF01868471.
Recently we proposed that cytoplasmic acidification of low K+ (LK) sheep erythrocytes may stimulate ouabain-resistant Cl(-)-dependent K+ flux (K+: Cl- contransport), also known to be activated by cell swelling, treatment with N-ethylmaleimide (NEM), or removal of cellular bivalent cations. Here we studied the dependence of K+ transport on intracellular and extracellular pH (pHi, pHo) varied either simultaneously or independently using the Cl-/HCO3- exchange inhibitor 4,4, diisothiocyanatostilbene-2,2'-disulfonic acid (DIDS). In both control and NEM-treated LK cells volumes were kept near normal by varying extracellular sucrose. Using DIDS as an effective pH clamp, both K+ efflux and influx of Rb+ used as K+ congener were strongly activated at acid pHi and alkaline pHo. A small stimulation of K+ (Rb+) flux was also seen at acid pHi in the absence of DIDS, i.e., when pHi approximately pHo. Anti-Ll serum, known to inhibit K+: Cl-cotransport, prevented the pHi-stimulated K+ (Rb+) fluxes. Subsequent to NEM treatment at pH 6, K+ (Rb+) fluxes were activated only by raising pH, and thus were similar to the pH activation profile of K+ (Rb+) fluxes in DIDS-treated cells with pHo varied at constant physiologic pHi. Anti-Ll, which inhibited NEM-stimulated K+ (Rb+) fluxes, failed to do so in NEM-plus DIDS-treated cells. Thus, NEM treatment interferes with the internal but not with the external pH-sensitive site.
最近我们提出,低钾(LK)绵羊红细胞的细胞质酸化可能会刺激哇巴因抗性氯依赖性钾通量(K⁺:Cl⁻共转运),已知该通量也可被细胞肿胀、用N-乙基马来酰亚胺(NEM)处理或去除细胞二价阳离子激活。在这里,我们使用Cl⁻/HCO₃⁻交换抑制剂4,4'-二异硫氰酸根合芪-2,2'-二磺酸(DIDS),研究了钾转运对细胞内和细胞外pH(pHi、pHo)同时或独立变化的依赖性。在对照和NEM处理的LK细胞中,通过改变细胞外蔗糖使细胞体积保持在接近正常水平。使用DIDS作为有效的pH钳制,作为钾同类物的Rb⁺的钾外流和内流在酸性pHi和碱性pHo时均被强烈激活。在没有DIDS的情况下,即在pHi约等于pHo时,在酸性pHi时也观察到钾(Rb⁺)通量有小的刺激。已知抑制K⁺:Cl⁻共转运的抗-Ll血清可阻止pHi刺激的钾(Rb⁺)通量。在pH 6下用NEM处理后,钾(Rb⁺)通量仅通过提高pH来激活,因此类似于在生理pHi恒定的情况下pHo变化的DIDS处理细胞中钾(Rb⁺)通量的pH激活曲线。抑制NEM刺激的钾(Rb⁺)通量的抗-Ll在NEM加DIDS处理的细胞中未能做到这一点。因此,NEM处理会干扰内部但不会干扰外部pH敏感位点。