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Inhibitory Tract Traps the Epithelial Na+ Channel in a Low Activity Conformation

机译:抑制性道理以低活性构型捕获上皮Na +通道

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摘要

Proteolysis plays an important role in the maturation and activation of epithelial Na+ channels (ENaCs). Non-cleaved channels are inactive at high extracellular Na+ concentrations and fully cleaved channels are constitutively active. Cleavage of the α and γ subunits at multiple sites activates the channel through the release of imbedded inhibitory tracts. Peptides derived from these released tracts are also inhibitory, likely through binding at the inhibitory tract sites. We recently reported a model of the α subunit. We have now cross-linked Cys derivatives of the inhibitory peptide to the channel, using our model to predict sites at a domain interface of the α subunit that is in proximity to the N terminus of the peptide. Furthermore, peptide inhibition was mimicked in the absence of peptide by cross-linking the channel across the domain interface. Our results suggest a dynamic domain interface that can be exploited by inhibitory peptides and provides a mechanism for peptide inhibition and proteolytic activation.
机译:蛋白水解在上皮Na + 通道(ENaCs)的成熟和激活中起着重要作用。在高细胞外Na + 浓度下,未切割的通道不活跃,而完全切割的通道则具有组成性活性。在多个位点切割α和γ亚基可通过释放嵌入的抑制束来激活通道。源自这些释放束的肽也具有抑制作用,很可能是通过在抑制束位点结合而产生的。我们最近报道了α亚基的模型。现在,我们已经使用我们的模型预测抑制肽的Cys衍生物与通道的交联,该模型可以预测位于肽N端附近的α亚基的结构域界面上的位点。此外,通过跨域界面交联通道,在不存在肽的情况下模拟了肽抑制作用。我们的结果表明可以被抑制性肽利用的动态域界面,并提供了一种抑制肽和蛋白水解激活的机制。

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