000 01634 a2200445 4500
005 20250513211748.0
264 0 _c20000810
008 200008s 0 0 eng d
022 _a0006-3002
024 7 _a10.1016/s0005-2736(00)00170-x
_2doi
040 _aNLM
_beng
_cNLM
100 1 _aMitchell, K E
245 0 0 _aA synthetic peptide based on a glycine-gated chloride channel induces a novel chloride conductance in isolated epithelial cells.
_h[electronic resource]
260 _bBiochimica et biophysica acta
_cJun 2000
300 _a47-60 p.
_bdigital
500 _aPublication Type: Journal Article; Research Support, Non-U.S. Gov't; Research Support, U.S. Gov't, P.H.S.
650 0 4 _aAmino Acid Sequence
650 0 4 _aAnimals
650 0 4 _aCell Line
650 0 4 _aCell Separation
650 0 4 _aChloride Channels
_xchemical synthesis
650 0 4 _aChlorides
_xmetabolism
650 0 4 _aCystic Fibrosis Transmembrane Conductance Regulator
_xphysiology
650 0 4 _aDogs
650 0 4 _aElectric Conductivity
650 0 4 _aElectrophysiology
650 0 4 _aEpithelial Cells
_xcytology
650 0 4 _aGlycine
_xmetabolism
650 0 4 _aHumans
650 0 4 _aIntercellular Signaling Peptides and Proteins
650 0 4 _aMolecular Sequence Data
650 0 4 _aPeptides
_xchemical synthesis
650 0 4 _aSolutions
650 0 4 _aStatic Electricity
700 1 _aIwamoto, T
700 1 _aTomich, J
700 1 _aFreeman, L C
773 0 _tBiochimica et biophysica acta
_gvol. 1466
_gno. 1-2
_gp. 47-60
856 4 0 _uhttps://doi.org/10.1016/s0005-2736(00)00170-x
_zAvailable from publisher's website
999 _c10777025
_d10777025