Friedrich-Alexander-Universität Erlangen-Nürnberg, Institute of Cellular and Molecular Physiology, Erlangen, Germany.
Department of Biophysics II/Structural Biology, University of Regensburg, Regensburg, Germany.
J Biol Chem. 2022 Jun;298(6):102004. doi: 10.1016/j.jbc.2022.102004. Epub 2022 Apr 30.
The epithelial sodium channel (ENaC) is a heterotrimer consisting of α-, β-, and γ-subunits. Channel activation requires proteolytic release of inhibitory tracts from the extracellular domains of α-ENaC and γ-ENaC; however, the proteases involved in the removal of the γ-inhibitory tract remain unclear. In several epithelial tissues, ENaC is coexpressed with the transmembrane serine protease 2 (TMPRSS2). Here, we explored the effect of human TMPRSS2 on human αβγ-ENaC heterologously expressed in Xenopus laevis oocytes. We found that coexpression of TMPRSS2 stimulated ENaC-mediated whole-cell currents by approximately threefold, likely because of an increase in average channel open probability. Furthermore, TMPRSS2-dependent ENaC stimulation was not observed using a catalytically inactive TMPRSS2 mutant and was associated with fully cleaved γ-ENaC in the intracellular and cell surface protein fractions. This stimulatory effect of TMPRSS2 on ENaC was partially preserved when inhibiting its proteolytic activity at the cell surface using aprotinin but was abolished when the γ-inhibitory tract remained attached to its binding site following introduction of two cysteine residues (S155C-Q426C) to form a disulfide bridge. In addition, computer simulations and site-directed mutagenesis experiments indicated that TMPRSS2 can cleave γ-ENaC at sites both proximal and distal to the γ-inhibitory tract. This suggests a dual role of TMPRSS2 in the proteolytic release of the γ-inhibitory tract. Finally, we demonstrated that TMPRSS2 knockdown in cultured human airway epithelial cells (H441) reduced baseline proteolytic activation of endogenously expressed ENaC. Thus, we conclude that TMPRSS2 is likely to contribute to proteolytic ENaC activation in epithelial tissues in vivo.
上皮钠离子通道(ENaC)是一种由α、β和γ亚基组成的异三聚体。通道激活需要从α-ENaC 和 γ-ENaC 的细胞外结构域中释放抑制性片段;然而,涉及γ-抑制性片段去除的蛋白酶仍不清楚。在几种上皮组织中,ENaC 与跨膜丝氨酸蛋白酶 2(TMPRSS2)共表达。在这里,我们研究了人 TMPRSS2 对在非洲爪蟾卵母细胞中异源表达的人αβγ-ENaC 的影响。我们发现,TMPRSS2 的共表达将 ENaC 介导的全细胞电流刺激大约增加了三倍,这可能是由于平均通道开放概率增加所致。此外,在用无催化活性的 TMPRSS2 突变体观察不到 TMPRSS2 依赖性的 ENaC 刺激,并且与细胞内和细胞表面蛋白级分中完全切割的 γ-ENaC 相关。当使用 aprotinin 在细胞表面抑制其蛋白水解活性时,TMPRSS2 对 ENaC 的这种刺激作用部分保留,但当引入两个半胱氨酸残基(S155C-Q426C)形成二硫键时,γ-抑制性片段仍然附着在其结合位点上时,这种作用被消除。此外,计算机模拟和定点突变实验表明,TMPRSS2 可以在靠近和远离 γ-抑制性片段的部位切割 γ-ENaC。这表明 TMPRSS2 在 γ-抑制性片段的蛋白水解释放中具有双重作用。最后,我们证明在培养的人气道上皮细胞(H441)中敲低 TMPRSS2 会降低内源性表达的 ENaC 的基础蛋白水解激活。因此,我们得出结论,TMPRSS2 可能有助于上皮组织中 ENaC 的蛋白水解激活。