Department of Cellular and Integrative Physiology, University of Texas Health Science Center at San Antonio, San Antonio, TX 78228, USA.
Faculty of Science, Zoology Department, Minia University, El-Minia 61519, Egypt.
Int J Mol Sci. 2022 Mar 31;23(7):3884. doi: 10.3390/ijms23073884.
The activity of the epithelial Na Channel (ENaC) is strongly dependent on the membrane phospholipid phosphatidylinositol 4,5-bisphosphate (PIP2). PIP2 binds two distinct cationic clusters within the N termini of β- and γ-ENaC subunits (βN1 and γN2). The affinities of these sites were previously determined using short synthetic peptides, yet their role in sensitizing ENaC to changes in PIP2 levels in the cellular system is not well established. We addressed this question by comparing the effects of PIP2 depletion and recovery on ENaC channel activity and intracellular Na levels [Na]. We tested effects on ENaC activity with mutations to the PIP2 binding sites using the optogenetic system CIBN/CRY2-OCRL to selectively deplete PIP2. We monitored changes of [Na] by measuring the fluorescent Na indicator, CoroNa Green AM, and changes in channel activity by performing patch clamp electrophysiology. Whole cell patch clamp measurements showed a complete lack of response to PIP2 depletion and recovery in ENaC with mutations to βN1 or γN2 or both sites, compared to wild type ENaC. Whereas mutant βN1 also had no change in CoroNa Green fluorescence in response to PIP2 depletion, γN2 did have reduced [Na], which was explained by having shorter CoroNa Green uptake and half-life. These results suggest that CoroNa Green measurements should be interpreted with caution. Importantly, the electrophysiology results show that the βN1 and γN2 sites on ENaC are each necessary to permit maximal ENaC activity in the presence of PIP2.
上皮钠通道 (ENaC) 的活性强烈依赖于膜磷脂磷脂酰肌醇 4,5-二磷酸 (PIP2)。PIP2 结合 β-和 γ-ENaC 亚基 (βN1 和 γN2) N 端的两个独特阳离子簇。这些位点的亲和力先前是使用短合成肽确定的,但它们在使 ENaC 对细胞系统中 PIP2 水平变化敏感方面的作用尚未得到很好的确定。我们通过比较 PIP2 耗竭和恢复对 ENaC 通道活性和细胞内 Na 水平 [Na] 的影响来解决这个问题。我们使用光遗传学系统 CIBN/CRY2-OCRL 来测试 PIP2 结合位点突变对 ENaC 活性的影响,以选择性地耗尽 PIP2。我们通过测量荧光 Na 指示剂 CoroNa Green AM 来监测 [Na] 的变化,并通过进行膜片钳电生理学测量来监测通道活性的变化。与野生型 ENaC 相比,突变βN1 或 γN2 或两个位点的 ENaC 对 PIP2 耗竭和恢复没有反应,而突变βN1 对 PIP2 耗竭也没有 CoroNa Green 荧光的变化,而 γN2 的 CoroNa Green 摄取和半衰期较短,导致 [Na] 减少。这些结果表明,应该谨慎解释 CoroNa Green 测量结果。重要的是,电生理学结果表明,βN1 和 γN2 位点对于在存在 PIP2 的情况下使 ENaC 最大活性都是必需的。