Title : Chloride-driven electromechanical phase lags at acoustic frequencies are generated by SLC26a5, the outer hair cell motor protein.

Pub. Date : 2014 Jul 1

PMID : 24988347






2 Functional Relationships(s)
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Compound Name
Protein Name
Organism
1 Chloride-driven electromechanical phase lags at acoustic frequencies are generated by SLC26a5, the outer hair cell motor protein. Chlorides solute carrier family 26 member 5 Homo sapiens
2 This stretched exponential behavior, which we accurately recapitulate with a new kinetic model, the meno presto model of prestin, influences the protein"s responsiveness to chloride binding and provides for delays in eM relative to membrane voltage driving force. Chlorides solute carrier family 26 member 5 Homo sapiens