Paulais Marc, Lachheb Sahran, Teulon Jacques
UPMC, CNRS UMR7134, Institut Fédératif de Recherches 58, Paris, France.
J Gen Physiol. 2006 Feb;127(2):205-15. doi: 10.1085/jgp.200509360.
This study investigates the presence and properties of Na+-activated K+ (K(Na)) channels in epithelial renal cells. Using real-time PCR on mouse microdissected nephron segments, we show that Slo2.2 mRNA, which encodes for the K(Na) channels of excitable cells, is expressed in the medullary and cortical thick ascending limbs of Henle's loop, but not in the other parts of the nephron. Patch-clamp analysis revealed the presence of a high conductance K+ channel in the basolateral membrane of both the medullary and cortical thick ascending limbs. This channel was highly K+ selective (P(K)/P(Na) approximately 20), its conductance ranged from 140 to 180 pS with subconductance levels, and its current/voltage relationship displayed intermediate, Na+-dependent, inward rectification. Internal Na+ and Cl- activated the channel with 50% effective concentrations (EC50) and Hill coefficients (nH) of 30 +/- 1 mM and 3.9 +/- 0.5 for internal Na+, and 35 +/- 10 mM and 1.3 +/- 0.25 for internal Cl-. Channel activity was unaltered by internal ATP (2 mM) and by internal pH, but clearly decreased when internal free Ca2+ concentration increased. This is the first demonstration of the presence in the epithelial cell membrane of a functional, Na+-activated, large-conductance K+ channel that closely resembles native K(Na) channels of excitable cells. This Slo2.2 type, Na+- and Cl--activated K+ channel is primarily located in the thick ascending limb, a major renal site of transcellular NaCl reabsorption.
本研究调查了上皮肾细胞中Na⁺激活的K⁺(K(Na))通道的存在及特性。通过对小鼠显微解剖的肾单位节段进行实时PCR,我们发现,编码可兴奋细胞K(Na)通道的Slo2.2 mRNA在髓袢升支粗段及皮质升支粗段有表达,但在肾单位的其他部位无表达。膜片钳分析显示,髓袢升支粗段及皮质升支粗段的基底外侧膜存在一种高电导K⁺通道。该通道对K⁺具有高度选择性(P(K)/P(Na)约为20),其电导范围为140至180 pS,存在亚电导水平,且其电流/电压关系呈现中度、依赖Na⁺的内向整流。胞内Na⁺和Cl⁻可激活该通道,胞内Na⁺的半数有效浓度(EC50)和希尔系数(nH)分别为30±1 mM和3.9±0.5,胞内Cl⁻的EC50和nH分别为35±10 mM和1.3±0.25。通道活性不受胞内ATP(2 mM)和胞内pH的影响,但当胞内游离Ca²⁺浓度升高时,通道活性明显降低。这首次证明了上皮细胞膜中存在一种功能性的、Na⁺激活的、大电导K⁺通道,该通道与可兴奋细胞的天然K(Na)通道极为相似。这种Slo2.2型、Na⁺和Cl⁻激活的K⁺通道主要位于升支粗段,这是肾小管跨细胞NaCl重吸收的主要部位。