Department of Basic Veterinary Medicine, Obihiro University of Agriculture and Veterinary Medicine, Obihiro, Japan.
Am J Physiol Cell Physiol. 2014 Feb 1;306(3):C230-40. doi: 10.1152/ajpcell.00219.2013. Epub 2013 Nov 20.
K(+) channels in mammary secretory (MS) cells are believed to play a role in transcellular electrolyte transport and thus determining ionic composition of the aqueous phase of milk. However, direct evidence for specific K(+) channel activity in native MS cells is lacking at the single-cell level. Here, we show for the first time that an inwardly rectifying K(+) (Kir) channel is functionally expressed in fully differentiated MS cells that were freshly isolated from the mammary gland of lactating mice. Using the standard whole cell patch-clamp technique, we found that mouse MS cells consistently displayed a K(+) current, whose electrophysiological properties are similar to those previously reported for Kir2.x channels, particularly Kir2.1: 1) current-voltage relationship with strong inward rectification, 2) slope conductance approximately proportional to the square root of external K(+) concentration, 3) voltage- and time-dependent and high-affinity block by external Ba(2+), and 4) voltage-dependent inhibition by external Cs(+). Accordingly, RT-PCR analysis revealed the gene expression of Kir2.1, but not Kir2.2, Kir2.3, and Kir2.4, in lactating mouse mammary gland, and immunohistochemical staining showed Kir2.1 protein expression in the secretory cells. Cell-attached patch recordings from MS cells revealed that a 31-pS K(+) channel with strong inward rectification was likely active at the resting membrane potential. Collectively, the present work demonstrates that a functional Kir2.1-like channel is expressed in lactating mouse MS cells. We propose that the channel might be involved, at least in part, in secretion and/or preservation of ionic components of milk stored into the lumen of these cells.
K(+) 通道在乳腺分泌(MS)细胞中被认为在细胞间电解质转运中发挥作用,从而决定乳汁水相的离子组成。然而,在单细胞水平上,缺乏对天然 MS 细胞中特定 K(+) 通道活性的直接证据。在这里,我们首次表明,一种内向整流钾(Kir)通道在从哺乳期小鼠乳腺中新鲜分离的完全分化的 MS 细胞中具有功能性表达。使用标准的全细胞膜片钳技术,我们发现小鼠 MS 细胞始终显示出 K(+) 电流,其电生理特性与先前报道的 Kir2.x 通道相似,特别是 Kir2.1:1)具有强内向整流的电流-电压关系,2)电导与外部 K(+) 浓度的平方根大致成正比,3)电压和时间依赖性以及对外部 Ba(2+) 的高亲和力阻断,以及 4)对外部 Cs(+) 的电压依赖性抑制。相应地,RT-PCR 分析显示,在哺乳期小鼠乳腺中表达 Kir2.1 基因,但不表达 Kir2.2、Kir2.3 和 Kir2.4,免疫组织化学染色显示 Kir2.1 蛋白在分泌细胞中表达。从 MS 细胞进行的细胞贴附式膜片钳记录显示,在静息膜电位下,一种具有强内向整流的 31-pS K(+) 通道可能处于活跃状态。总的来说,本工作表明功能性 Kir2.1 样通道在哺乳期小鼠 MS 细胞中表达。我们提出,该通道可能至少部分参与了储存到这些细胞腔中的乳汁的离子成分的分泌和/或保存。