Houser Alexandra, Baconguis Isabelle
Neuroscience Graduate Program, Oregon Health & Science University, Portland, OR 97239, USA.
Vollum Institute, Oregon Health & Science University, Portland, OR 97239, USA.
Structure. 2025 Feb 6;33(2):349-362.e4. doi: 10.1016/j.str.2024.11.013. Epub 2024 Dec 11.
Epithelial sodium channels (ENaCs) play a crucial role in Na reabsorption in mammals. To date, four subunits have been identified-α, β, γ, and δ-believed to form different heteromeric complexes. Currently, only the structure of the αβγ complex is known. To investigate the formation of channels with different subunit compositions and to determine how each subunit contributes to distinct channel properties, we co-expressed human δ, β, and γ. Using single-particle cryoelectron microscopy, we observed three distinct ENaC complexes. The structures unveil a pattern in which β and γ positions are conserved among the different complexes while the α position in αβγ trimer is occupied by either δ or another β. The δ subunit induces structural rearrangements in the γ subunit, which may contribute to the differences in channel activity between αβγ and δβγ channels. These structural changes provide molecular insights into how ENaC subunit composition modulates channel function.
上皮钠通道(ENaC)在哺乳动物的钠重吸收中起关键作用。迄今为止,已鉴定出四个亚基——α、β、γ和δ——据信它们形成不同的异源复合物。目前,仅知道αβγ复合物的结构。为了研究具有不同亚基组成的通道的形成,并确定每个亚基如何对不同的通道特性做出贡献,我们共表达了人类δ、β和γ。使用单颗粒冷冻电子显微镜,我们观察到三种不同的ENaC复合物。这些结构揭示了一种模式,即β和γ的位置在不同复合物中是保守的,而αβγ三聚体中的α位置被δ或另一个β占据。δ亚基诱导γ亚基的结构重排,这可能导致αβγ和δβγ通道之间通道活性的差异。这些结构变化为ENaC亚基组成如何调节通道功能提供了分子层面的见解。