In epithelial cells, hyposmotic stress induces visible cell swelling and large Cl- currents, which deactivate on return to isotonic solutions and are abolished by 0.1-0.5 mM DIDS (4,4'-diisothiocyanatostilbene-2,2'-disulphonic acid). During depolarizing voltage clamp pulses, the currents activate rapidly and show time-dependent relaxation with associated tail currents on return to negative potentials. 2. We used whole-cell and outside-out patch recording to study volume activation of Cl- currents in the epithelial cancer cell lines H69AR and HeLa S5. In a 210 or 160 mosmol l-1 hyposmotic bathing solution containing 90 mM NaCl, 1 mM Ca2+ and 1 mM Mg2+, current relaxation was rapid, occurred positive to the Cl- reversal potential and reduced current to < 30% of its peak level at +100 mV. 3. Replacement of most bath inorganic cations by N-methyl-D-glucamine (NMDG) at constant Cl- concentration and osmolarity eliminated most of the current relaxation and caused an increase in steady-state current levels. Steady-state current was 85 +/- 6% of peak current at +100 mV in NMDG-Cl bath solution. This ratio fell to 55 +/- 2% (n = 5) when 1 mM Mg2+ was re-added to the bath. 4. Re-addition of Mg2+ or other Group II metals (Ca2+, Sr2+, Ba2+) induced immediate changes in current relaxation in a dose- and species-dependent manner. Concentrations of Mg2+ as low as 0.1 mM were effective in causing Cl- current relaxation. The IC50 for steady-state current block by external Mg2+ was 1.75 mM.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
在上皮细胞中,低渗应激会导致明显的细胞肿胀和大量氯离子电流,当恢复到等渗溶液时这些电流会失活,并且会被0.1 - 0.5 mM的DIDS(4,4'-二异硫氰酸根合芪-2,2'-二磺酸)所消除。在去极化电压钳脉冲期间,电流迅速激活,并在恢复到负电位时显示出与相关尾电流相关的时间依赖性松弛。2. 我们使用全细胞和外向膜片钳记录来研究上皮癌细胞系H69AR和HeLa S5中氯离子电流的容积激活。在含有90 mM NaCl、1 mM Ca2+和1 mM Mg2+的210或160 mosmol l-1低渗浴液中,电流松弛迅速,发生在氯离子反转电位的正向,并且在 +100 mV时将电流降低至其峰值水平的 < 30%。3. 在恒定的氯离子浓度和渗透压下,用N-甲基-D-葡糖胺(NMDG)替代大部分浴液中的无机阳离子消除了大部分电流松弛,并导致稳态电流水平增加。在NMDG-Cl浴液中,稳态电流在 +100 mV时为峰值电流的85 +/- 6%。当向浴液中重新添加1 mM Mg2+时,该比例降至55 +/- 2%(n = 5)。4. 重新添加Mg2+或其他第II族金属(Ca2+、Sr2+、Ba2+)会以剂量和种类依赖的方式立即引起电流松弛的变化。低至0.1 mM的Mg2+浓度就能有效引起氯离子电流松弛。外部Mg2+对稳态电流阻断的IC50为1.75 mM。(摘要截短于250字)