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Constraint-based, Homology Model of the Extracellular Domain of the Epithelial Na+ Channel α Subunit Reveals a Mechanism of Channel Activation by Proteases.

J Biol Chem.. 2011-01;  286(1):649 - 660
Ossama B. Kashlan, Joshua L. Adelman, Sora Okumura, Brandon M. Blobner, Zachary Zuzek, Rebecca P. Hughey, Thomas R. Kleyman, and Michael Grabe. Department of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania 15261, USA.
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摘要

The epithelial Na(+) channel (ENaC) mediates Na(+) transport across high resistance epithelia. This channel is assembled from three homologous subunits with the majority of the protein's mass found in the extracellular domains. Acid-sensing ion channel 1 (ASIC1) is homologous to ENaC, but a key functional domain is highly divergent. Here we present molecular models of the extracellular region of α ENaC based on a large data set of mutations that attenuate inhibitory peptide binding in combination with comparative modeling based on the resolved structure of ASIC1. The models successfully rationalized the data from the peptide binding screen. We engineered new mutants that had not been tested based on ... More

关键词

Acid-sensing Ion Channels (ASIC); Allosteric Regulation; Epithelium; Protein Structure; Sodium Channels; ENaC; Structural Models