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The American Journal of Physiology|October 1, 1994
Na(+)-coupled alanine transport in LLC-PK1 cellsG A Kimmich, J Randles, J WilsonThe American Journal of Physiology|January 1, 1996
A model for the kinetic mechanism of sodium-coupled L-alanine transport in LLC-PK1 cellsJ J Wilson, J Randles, G A KimmichThe Journal of Membrane Biology|October 10, 1998
Na+-coupled alanine transport in LLC-PK1 cells: the relationship between the Km for Na+ at low [Alanine] and potential dependence for the systemJ J Wilson, J Randles, G A KimmichBiochimica Et Biophysica Acta|March 13, 1980
Evidence for an intestinal Na+:sugar transport coupling stoichiometry of 2.0G A Kimmich, J RandlesThe American Journal of Physiology|July 1, 1979
Energetics of sugar transport by isolated intestinal epithelial cells: effects of cytochalasin BG A Kimmich, J RandlesThe American Journal of Physiology|July 1, 1984
Sodium-sugar coupling stoichiometry in chick intestinal cellsG A Kimmich, J RandlesThe Journal of Membrane Biology|August 11, 1975
A Na+-independent, phloretin-sensitive monosaccharide transport system in isolated intestinal epithelial cellsG A Kimmich, J RandlesThe American Journal of Physiology|November 1, 1981
alpha-Methylglucoside satisfies only Na+-dependent transport system of intestinal epitheliumG A Kimmich, J RandlesThe American Journal of Physiology|September 1, 1982
An ATP- and Ca2+-regulated Na+ channel in isolated intestinal epithelial cellsG A Kimmich, J RandlesThe Journal of Membrane Biology|June 30, 1976
2-Deoxyglucose transport by intestinal epithelial cells isolated from the chickG A Kimmich, J RandlesPageof 746