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Biochemistry|January 4, 1983
Rhodopsin in reconstituted phospholipid vesicles. 1. Structural parameters and light-induced conformational changes detected by resonance energy transfer and fluorescence quenchingH Borochov-Neori, M MontalProceedings of the National Academy of Sciences of the United States of America|April 2, 1996
Pentameric subunit stoichiometry of a neuronal glutamate receptorA V Ferrer-Montiel, M MontalThe Journal of Biological Chemistry|May 10, 1981
Stabilization of acetylcholine receptor channels by lipids in cholate solution and during reconstitution in vesiclesR Anholt, J Lindstrom, M MontalEuropean Journal of Biochemistry|August 1, 1980
Functional equivalence of monomeric and dimeric forms of purified acetylcholine receptors from Torpedo californica in reconstituted lipid vesiclesR Anholt, J Lindstrom, M MontalEuropean Biophysics Journal : EBJ|January 1, 1990
Tetanus toxin channel in phosphatidylserine planar bilayers: conductance states and pH dependenceG Rauch, F Gambale, M MontalFEBS Letters|June 14, 1993
A negative charge in the M2 transmembrane segment of the neuronal alpha 7 acetylcholine receptor increases permeability to divalent cationsA V Ferrer-Montiel, M MontalProteins|January 1, 1990
Bundles of amphipathic transmembrane alpha-helices as a structural motif for ion-conducting channel proteins: studies on sodium channels and acetylcholine receptorsS Oiki, V Madison, M MontalThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|February 1, 1984
The acetylcholine receptor channel from Torpedo californica has two open statesP Labarca, J Lindstrom, M MontalProceedings of the National Academy of Sciences of the United States of America|December 1, 1979
Functional reconstitution of photosynthetic reaction centers in planar lipid bilayersM Schönfeld, M Montal, G FeherPageof 11