Komwatana P, Conigrave A D, Delbridge L, Young J A, Cook D I
Department of Physiology, University of Sydney, NSW, Australia.
Pflugers Arch. 1994 Feb;426(3-4):320-7. doi: 10.1007/BF00374788.
We have used whole-cell patch-clamp techniques to study the conductances in the plasma membranes of human parathyroid cells. With a KCl-rich pipette solution containing Ca2+ buffered to a concentration of 0.1 mumol/l, the zero current potential was -71.1 +/- 0.5 mV (n = 19) and the whole-cell current/voltage (I/V) relation had an inwardly rectifying and an outwardly rectifying component. The inwardly rectifying current activated instantaneously on hyperpolarization of the plasma membrane to potentials more negative than -80 mV, and a semi-logarithmic plot of the reversal potential of the inward current (estimated by extrapolation from the range in which it was linear) as a function of extracellular K+ concentration ([K+]o) revealed a linear relation with a slope of 64 mV per decade change in [K+]o, which is not significantly different from the Nernstian slope, demonstrating that the current was carried by K+ ions. The conductance exhibited a square root dependence on [K+]o as has been observed for inward rectifiers in other tissues. The current was blocked by the presence of Ba2+ (1 mmol/l) or Cs+ (1.5 mmol/l) in the bath. The outwardly rectifying current was activated by depolarization of the membrane potential to potentials more positive than -20 mV. It was inhibited by replacement of pipette K+ with Cs+, indicating that it also was a K+ current: it was partially (42%) blocked when tetraethylammonium (TEA+, 10 mmol/l) was added to the bath.(ABSTRACT TRUNCATED AT 250 WORDS)
我们运用全细胞膜片钳技术研究了人甲状旁腺细胞质膜的电导。使用富含KCl且将Ca2+缓冲至浓度为0.1 μmol/L的移液管溶液时,零电流电位为-71.1±0.5 mV(n = 19),全细胞电流/电压(I/V)关系具有内向整流和外向整流成分。内向整流电流在质膜超极化至比-80 mV更负的电位时瞬间激活,内向电流反转电位(通过其线性范围外推估算)作为细胞外K+浓度([K+]o)函数的半对数图显示,斜率为每十倍变化的[K+]o 64 mV的线性关系,与能斯特斜率无显著差异,表明该电流由K+离子携带。电导对[K+]o呈平方根依赖性,这与其他组织中内向整流器的情况一致。该电流在浴液中存在Ba2+(1 mmol/L)或Cs+(1.5 mmol/L)时被阻断。外向整流电流在膜电位去极化至比-20 mV更正的电位时激活。用Cs+替代移液管中的K+可抑制该电流,表明它也是K+电流:当向浴液中加入四乙铵(TEA+,10 mmol/L)时,该电流被部分(42%)阻断。(摘要截短于250字)