vanTol Brenna L, Missan Sergey, Crack Julie, Moser Shasta, Baldridge William H, Linsdell Paul, Cowley Elizabeth A
Dept. of Physiology and Biophysics, Dalhousie Univ., Halifax, Nova Scotia B3H 1X5, Canada.
Am J Physiol Cell Physiol. 2007 Sep;293(3):C1010-9. doi: 10.1152/ajpcell.00071.2007. Epub 2007 Jun 27.
Using the human mammary epithelial cell line MCF-7, we have investigated volume-activated changes in response to hyposmotic stress. Switching MCF-7 cells from an isosmotic to a hyposmotic solution resulted in an initial cell swelling response, followed by a regulatory volume decrease (RVD). This RVD response was inhibited by the nonselective K(+) channel inhibitors Ba(2+), quinine, and tetraethylammonium chloride, implicating K(+) channel activity in this volume-regulatory mechanism. Additional studies using chromonol 293B and XE991 as inhibitors of the KCNQ1 K(+) channel, and also a dominant-negative NH(2)-terminal truncated KCNQ1 isoform, showed complete abolition of the RVD response, suggesting that KCNQ1 plays an important role in regulation of cell volume in MCF-7 cells. We additionally confirmed that KCNQ1 mRNA and protein is expressed in MCF-7 cells, and that, when these cells are cultured as a polarized monolayer, KCNQ1 is located exclusively at the apical membrane. Whole cell patch-clamp recordings from MCF-7 cells revealed a small 293B-sensitive current under hyposmotic, but not isosmotic conditions, while recordings from mammalian cells heterologously expressing KCNQ1 alone or KCNQ1 with the accessory subunit KCNE3 reveal a volume-sensitive K(+) current, inhibited by 293B. These data suggest that KCNQ1 may play important physiological roles in the mammary epithelium, regulating cell volume and potentially mediating transepithelial K(+) secretion.
我们使用人乳腺上皮细胞系MCF-7,研究了其对低渗应激的容积激活变化。将MCF-7细胞从等渗溶液转换为低渗溶液会导致细胞先出现肿胀反应,随后是调节性容积减小(RVD)。这种RVD反应被非选择性钾通道抑制剂钡离子、奎宁和四乙铵氯化物抑制,这表明钾通道活性参与了这种容积调节机制。使用色满醇293B和XE991作为KCNQ1钾通道抑制剂以及显性负性氨基末端截短的KCNQ1异构体进行的进一步研究表明,RVD反应完全消失,这表明KCNQ1在MCF-7细胞的细胞容积调节中起重要作用。我们还证实KCNQ1 mRNA和蛋白在MCF-7细胞中表达,并且当这些细胞作为极化单层培养时,KCNQ1仅位于顶端膜。来自MCF-7细胞的全细胞膜片钳记录显示,在低渗而非等渗条件下有一个小的对293B敏感的电流,而来自单独异源表达KCNQ1或与辅助亚基KCNE3一起异源表达KCNQ1的哺乳动物细胞的记录显示有一个容积敏感的钾电流,被293B抑制。这些数据表明,KCNQ1可能在乳腺上皮中发挥重要的生理作用,调节细胞容积并可能介导跨上皮钾分泌。