Patel Ankit B, Yang Lei, Deng Su, Palmer Lawrence G
a Department of Physiology and Biophysics; Weill-Cornell Medical College ; New York , NY USA.
Channels (Austin). 2014;8(5):444-51. doi: 10.4161/19336950.2014.949190.
Intracellular [Na(+)] ([Na(+)]i) modulates the activity of the epithelial Na channel (ENaC) to help prevent cell swelling and regulate epithelial Na(+) transport, but the underlying mechanisms remain unclear. We show here that short-term (60-80 min) incubation of ENaC-expressing oocytes in high Na(+) results in a 75% decrease in channel activity. When the β subunit was truncated, corresponding to a gain-of-function mutation found in Liddle's syndrome, the same maneuver reduced activity by 45% despite a larger increase in [Na(+)]i. In both cases the inhibition occurred with little to no change in cell-surface expression of γENaC. Long-term incubation (18 hours) in high Na(+) reduced activity by 92% and 75% in wild-type channels and Liddle's mutant, respectively, with concomitant 70% and 52% decreases in cell-surface γENaC. In the presence of Brefeldin A to inhibit forward protein trafficking, high-Na(+) incubation decreased wt ENaC activity by 52% and 88% after 4 and 8 hour incubations, respectively. Cleaved γENaC at the cell surface had lifetimes at the surface of 6 hrs in low Na(+) and 4 hrs in high Na(+), suggesting that [Na(+)]i increased the rate of retrieval of cleaved γ ENaC by 50%. This implies that enhanced retrieval of ENaC channels at the cell surface accounts for part, but not all, of the downregulation of ENaC activity shown with chronic increases in [Na(+)]i.
细胞内钠离子浓度([Na⁺]i)调节上皮钠通道(ENaC)的活性,以帮助防止细胞肿胀并调节上皮钠离子转运,但其潜在机制仍不清楚。我们在此表明,将表达ENaC的卵母细胞在高钠环境中短期(60 - 80分钟)孵育会导致通道活性降低75%。当β亚基被截断时,这对应于利德尔综合征中发现的功能获得性突变,尽管[Na⁺]i有更大幅度的增加,但相同的操作使活性降低了45%。在这两种情况下,抑制作用发生时γENaC的细胞表面表达几乎没有变化。在高钠环境中长期孵育(18小时),野生型通道和利德尔突变体的活性分别降低了92%和75%,同时细胞表面γENaC分别减少了70%和52%。在存在布雷菲德菌素A以抑制蛋白质正向转运的情况下,高钠孵育4小时和8小时后,野生型ENaC活性分别降低了52%和88%。细胞表面裂解的γENaC在低钠环境中的表面寿命为6小时,在高钠环境中为4小时,这表明[Na⁺]i使裂解的γENaC的回收速率提高了50%。这意味着细胞表面ENaC通道回收增强是[Na⁺]i慢性增加所导致的ENaC活性下调的部分而非全部原因。