Turner R J, George J N, Baum B J
J Membr Biol. 1986;94(2):143-52. doi: 10.1007/BF01871194.
Sodium (22Na) transport was studied in a basolateral membrane vesicle preparation from rabbit parotid. Sodium uptake was markedly dependent on the presence of both K+ and Cl- in the extravesicular medium, being reduced 5 times when K+ was replaced by a nonphysiologic cation and 10 times when Cl was replaced by a nonphysiologic anion. Sodium uptake was stimulated by gradients of either K+ or Cl (relative to nongradient conditions) and could be driven against a sodium concentration gradient by a KCl gradient. No effect of membrane potentials on KCl-dependent sodium flux could be detected, indicating that this is an electroneutral process. A KCl-dependent component of sodium flux could also be demonstrated under equilibrium exchange conditions, indicating a direct effect of K+ and Cl on the sodium transport pathway. KCl-dependent sodium uptake exhibited a hyperbolic dependence on sodium concentration consistent with the existence of a single-transport system with Km = 3.2 mM at 80 mM KCl and 23 degrees C. Furosemide inhibited this transporter with K0.5 = 2 X 10(4) M (23 degrees C). When sodium uptake was measured as a function of potassium and chloride concentrations a hyperbolic dependence on [K] (Hill coefficient = 0.87 +/- 0.09) and a sigmoidal dependence on [Cl] (Hill coefficient = 1.31 +/- 0.07) were observed, consistent with a Na/K/Cl stoichiometry of 1:1:2. Taken together these data provide strong evidence for the electroneutral coupling of sodium and KCl movements in this preparation and strongly support the hypothesis that a Na+/K+/Cl cotransport system thought to be associated with transepithelial chloride and water movements in many exocrine glands is present in the parotid acinar basolateral membrane.
对兔腮腺基底外侧膜囊泡制剂中的钠(²²Na)转运进行了研究。钠摄取明显依赖于囊泡外介质中K⁺和Cl⁻的存在,当K⁺被非生理性阳离子取代时,摄取减少5倍,当Cl⁻被非生理性阴离子取代时,摄取减少10倍。K⁺或Cl⁻的梯度(相对于无梯度条件)刺激钠摄取,并且KCl梯度可驱使钠摄取逆着钠浓度梯度进行。未检测到膜电位对KCl依赖性钠通量的影响,表明这是一个电中性过程。在平衡交换条件下也可证明钠通量的KCl依赖性成分,表明K⁺和Cl⁻对钠转运途径有直接影响。KCl依赖性钠摄取对钠浓度呈双曲线依赖性,这与在80 mM KCl和23℃下存在Km = 3.2 mM的单一转运系统一致。呋塞米以K0.5 = 2×10⁻⁴ M(23℃)抑制该转运体。当将钠摄取作为钾和氯浓度的函数进行测量时,观察到对[K]呈双曲线依赖性(希尔系数 = 0.87±0.09),对[Cl]呈S形依赖性(希尔系数 = 1.31±0.07),这与Na/K/Cl化学计量比为1:1:2一致。综合这些数据为该制剂中钠与KCl运动的电中性偶联提供了有力证据,并有力支持了以下假设:在腮腺腺泡基底外侧膜中存在一种被认为与许多外分泌腺的跨上皮氯和水运动相关的Na⁺/K⁺/Cl共转运系统。