Almassy Janos, Yule David I
Department of Pharmacology and Physiology, University of Rochester, Rochester, NY 14642, USA.
Cold Spring Harb Protoc. 2013 Jan 1;2013(1):pdb.prot072769. doi: 10.1101/pdb.prot072769.
The production of saliva by parotid acinar cells is stimulated by Ca(2+) activation of Cl(-) and K(+) channels located in the apical plasma membrane of these polarized cells. Here, we utilize a combination of spatially limited flash photolysis, Ca(2+) imaging, and electrophysiological recording to investigate the distinct distribution of Ca(2+)-dependent ion channels in the plasma membrane (PM) of enzymatically isolated murine parotid acinar cells. In these experiments, the aim of photolysis is to selectively target and modify the activity of ion channels, thereby revealing membrane-domain-specific differences in distribution. Specifically, the relative distribution of channels to either apical or basal PM can be investigated. Since there is substantial evidence that Ca(2+)-dependent Cl(-) channels are exclusively localized to the apical membrane of acinar cells, this provides an important electrophysiological verification that a particular membrane has been specifically targeted.
腮腺腺泡细胞分泌唾液是由位于这些极化细胞顶端质膜上的氯离子(Cl⁻)和钾离子(K⁺)通道的钙离子(Ca²⁺)激活所刺激的。在这里,我们利用空间有限的闪光光解、Ca²⁺成像和电生理记录相结合的方法,来研究酶分离的小鼠腮腺腺泡细胞质膜(PM)中Ca²⁺依赖性离子通道的不同分布。在这些实验中,光解的目的是选择性地靶向并改变离子通道的活性,从而揭示膜结构域特异性的分布差异。具体而言,可以研究通道在顶端或基底质膜上的相对分布。由于有大量证据表明Ca²⁺依赖性Cl⁻通道仅定位于腺泡细胞的顶端膜,这为特定膜已被特异性靶向提供了重要的电生理验证。