From the Department of Medicine, Renal-Electrolyte Division and.
From the Department of Medicine, Renal-Electrolyte Division and
J Biol Chem. 2018 Oct 19;293(42):16217-16225. doi: 10.1074/jbc.RA118.004362. Epub 2018 Aug 21.
Epithelial Na channel (ENaC) maturation and activation require proteolysis of both the α and γ subunits. Cleavage at multiple sites in the finger domain of each subunit liberates their autoinhibitory tracts. Synthetic peptides derived from the proteolytically released fragments inhibit the channel, likely by reconstituting key interactions removed by the proteolysis. We previously showed that a peptide derived from the α subunit's autoinhibitory sequence (α-8) binds at the α subunit's finger-thumb domain interface. Despite low sequence similarity between the α and γ subunit finger domains, we hypothesized that a peptide derived from the γ subunit's autoinhibitory sequence (γ-11) inhibits the channel through an analogous mechanism. Using oocytes, we found here that channels lacking a γ subunit thumb domain were no longer sensitive to γ-11, but remained sensitive to α-8. We identified finger domain sites in the γ subunit that dramatically reduced γ-11 inhibition. Using cysteines and sulfhydryl reactive cross-linkers introduced into both the peptide and the subunit, we also could cross-link γ-11 to both the finger domain and the thumb domain of the γ subunit. Our results suggest that α-8 and γ-11 occupy similar binding pockets within their respective subunits, and that proteolysis of the α and γ subunits activate the channel through analogous mechanisms.
上皮钠离子通道(ENaC)的成熟和激活需要α和γ亚基的蛋白水解。每个亚基的指状结构域中的多个位点的切割释放其自身抑制性片段。从蛋白水解释放的片段衍生的合成肽抑制通道,可能通过重建由蛋白水解去除的关键相互作用来实现。我们之前表明,源自α亚基自身抑制序列(α-8)的肽结合在α亚基的指-拇指结构域界面上。尽管α和γ亚基的指状结构域之间的序列相似性较低,但我们假设源自γ亚基自身抑制序列(γ-11)的肽通过类似的机制抑制通道。使用卵母细胞,我们在这里发现缺乏γ亚基拇指结构域的通道不再对γ-11敏感,但仍对α-8敏感。我们鉴定了γ亚基的指状结构域中的位点,这些位点显著降低了γ-11的抑制作用。使用引入到肽和亚基中的半胱氨酸和巯基反应性交联剂,我们还可以将γ-11交联到γ亚基的指状结构域和拇指结构域。我们的结果表明,α-8 和 γ-11 占据其各自亚基中的相似结合口袋,并且α和γ亚基的蛋白水解通过类似的机制激活通道。