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转运钾离子对豚鼠回肠刷状缘膜囊泡氯离子/质子同向转运体活性的影响。

Trans-potassium effects on the chloride/proton symporter activity of guinea-pig ileal brush-border membrane vesicles.

作者信息

Vasseur M, Caüzac M, Frangne R, Alvarado F

机构信息

Centre de Recherche sur l'Endocrinologie Moléculaire, Meudon, France.

出版信息

Biochim Biophys Acta. 1992 Jun 11;1107(1):150-8. doi: 10.1016/0005-2736(92)90341-i.

Abstract

To investigate the inhibitory effect of trans potassium on the Cl-/H+ symporter activity of brush-border membrane vesicles from guinea pig ileum, we measured both 36Cl uptake and, by the pyranine fluorescence method, proton fluxes, in the presence of appropriate H+ and K+ gradients. In the absence of valinomycin, a time-dependent inhibitory effect of chloride uptake by trans K+ was demonstrated. This inhibition was independent of the presence or absence of any K+ gradient. Electrical effects cannot be involved to explain these inhibitions because the intrinsic permeability of these vesicles to Cl- and K+ is negligibly small. Rather, our results show that, in the absence of valinomycin, the inhibitory effect of intravesicular K+ involves an acceleration of the rate of dissipation of the proton gradient through an electroneutral exchange of trans K+ for cis H+, catalyzed by the K+/H+ antiporter also present in these membranes. Valinomycin can further accelerate the rate of pH gradient dissipation by facilitating an electrically-coupled exchange between K+ and H+. To evaluate the apparent rate of pH-dissipating, downhill proton influx, we measured chloride uptake by vesicles preincubated in the presence of alkaline-inside pH gradients (pHout/pHin = 5.0/7.5), charged or not with K+. In the absence of intravesicular K+, proton influx exhibited monoexponential kinetics with a time constant k = 11 s-1. Presence of 100 mM K+ within the vesicles significantly increased the rate of pH gradient dissipation which, furthermore, became bi-exponential and revealed the appearance of an additional, faster proton influx component with k = 71 s-1. This new component we interpret as representing the sum of the electroneutral and the electrically-coupled exchange of trans K+ for cis H+, mentioned above. Finally, by using the pH-sensitive fluorophore, pyranine, we demonstrate that, independent of the absence or presence of a pH gradient, either vesicle acidification or alkalinisation can be generated by adding, respectively, Cl- or K+ to the extravesicular medium. Such results confirm the independent existence of both Cl-/H+ symporter and K+/H+ antiporter activities in our vesicle preparations, the relative activity of the former being larger under the conditions of the present experiments. The possible interplay of these two proton-transfer mechanisms in the regulation of the intracellular pH is discussed.

摘要

为了研究反式钾对豚鼠回肠刷状缘膜囊泡Cl⁻/H⁺同向转运体活性的抑制作用,我们在存在适当的H⁺和K⁺梯度的情况下,测量了³⁶Cl摄取以及通过吡喃荧光法测量的质子通量。在没有缬氨霉素的情况下,证明了反式钾对氯摄取具有时间依赖性抑制作用。这种抑制作用与任何K⁺梯度的存在与否无关。电效应无法解释这些抑制作用,因为这些囊泡对Cl⁻和K⁺的固有通透性非常小。相反,我们的结果表明,在没有缬氨霉素的情况下,囊泡内K⁺的抑制作用涉及通过K⁺/H⁺反向转运体催化的反式K⁺与顺式H⁺的电中性交换,加速质子梯度的消散速率,该反向转运体也存在于这些膜中。缬氨霉素可以通过促进K⁺和H⁺之间的电偶联交换进一步加速pH梯度消散速率。为了评估pH消散的表观速率,即下坡质子内流,我们测量了在碱性内部pH梯度(pH外/pH内 = 5.0/7.5)存在下预孵育的囊泡的氯摄取,囊泡内是否含有K⁺。在没有囊泡内K⁺的情况下,质子内流表现出单指数动力学,时间常数k = 11 s⁻¹。囊泡内存在100 mM K⁺显著增加了pH梯度消散速率,此外,其变为双指数,并显示出出现了一个额外的、更快的质子内流成分,k = 71 s⁻¹。我们将这个新成分解释为代表上述反式K⁺与顺式H⁺的电中性交换和电偶联交换的总和。最后,通过使用对pH敏感的荧光团吡喃,我们证明,无论是否存在pH梯度,通过分别向囊泡外介质中添加Cl⁻或K⁺,都可以产生囊泡酸化或碱化。这些结果证实了我们的囊泡制剂中Cl⁻/H⁺同向转运体和K⁺/H⁺反向转运体活性的独立存在,在本实验条件下,前者的相对活性更大。讨论了这两种质子转移机制在调节细胞内pH中的可能相互作用。

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