Citation: M. Grunewald et al., BIOTINYLATION OF SINGLE CYSTEINE MUTANTS OF THE GLUTAMATE TRANSPORTERGLT-1 FROM RAT-BRAIN REVEALS ITS UNUSUAL TOPOLOGY, Neuron (Cambridge, Mass.), 21(3), 1998, pp. 623-632
Authors:
ZHANG YM
BENDAHAN A
ZARBIV R
KAVANAUGH MP
KANNER BI
Citation: Ym. Zhang et al., MOLECULAR DETERMINANT OF ION SELECTIVITY OF A (NA-COUPLED RAT-BRAIN GLUTAMATE TRANSPORTER(+K+)), Proceedings of the National Academy of Sciences of the United Statesof America, 95(2), 1998, pp. 751-755
Authors:
ZARBIV R
GRUNEWALD M
KAVANAUGH MP
KANNER BI
Citation: R. Zarbiv et al., CYSTEINE SCANNING OF THE SURROUNDINGS OF AN ALKALI-ION BINDING-SITE OF THE GLUTAMATE TRANSPORTER GLT-1 REVEALS A CONFORMATIONALLY SENSITIVERESIDUE, The Journal of biological chemistry, 273(23), 1998, pp. 14231-14237
Authors:
KAVANAUGH MP
BENDAHAN A
ZERANGUE N
ZHANG YM
KANNER BI
Citation: Mp. Kavanaugh et al., MUTATION OF AN AMINO-ACID RESIDUE INFLUENCING POTASSIUM COUPLING IN THE GLUTAMATE TRANSPORTER GET-1 INDUCES OBLIGATE EXCHANGE, The Journal of biological chemistry, 272(3), 1997, pp. 1703-1708
Citation: Y. Bismuth et al., TYROSINE-140 OF THE GAMMA-AMINOBUTYRIC-ACID TRANSPORTER GAT-1 PLAYS ACRITICAL ROLE IN NEUROTRANSMITTER RECOGNITION, The Journal of biological chemistry, 272(26), 1997, pp. 16096-16102
Citation: Er. Bennett et Bi. Kanner, THE MEMBRANE TOPOLOGY OF GAT-1, A (NA-)-COUPLED GAMMA-AMINOBUTYRIC-ACID TRANSPORTER FROM RAT-BRAIN(+CL), The Journal of biological chemistry, 272(2), 1997, pp. 1203-1210
Citation: G. Pines et al., GLUTAMATE-404 IS INVOLVED IN THE SUBSTRATE DISCRIMINATION OF GLT-1, A(NA-COUPLED GLUTAMATE TRANSPORTER FROM RAT-BRAIN(+K+)), The Journal of biological chemistry, 270(29), 1995, pp. 17093-17097
Authors:
KESHET GI
BENDAHAN A
SU HL
MAGER S
LESTER HA
KANNER BI
Citation: Gi. Keshet et al., GLUTAMATE-101 IS CRITICAL FOR THE FUNCTION OF THE SODIUM AND CHLORIDE-COUPLED GABA TRANSPORTER GAT-1, FEBS letters, 371(1), 1995, pp. 39-42
Citation: Bi. Kanner et N. Kleinbergerdoron, STRUCTURE AND FUNCTION OF SODIUM-COUPLED NEUROTRANSMITTER TRANSPORTERS, Cellular physiology and biochemistry, 4(5-6), 1994, pp. 174-184
Citation: Bi. Kanner, STRUCTURE AND FUNCTION OF SODIUM-COUPLED NEUROTRANSMITTER TRANSPORTERS, Renal physiology and biochemistry, 17(3-4), 1994, pp. 208-211
Citation: T. Rauen et Bi. Kanner, LOCALIZATION OF THE GLUTAMATE TRANSPORTER GLT-1 IN RAT AND MACAQUE MONKEY RETINAE, Neuroscience letters, 169(1-2), 1994, pp. 137-140
Citation: Bi. Kanner, SODIUM-COUPLED NEUROTRANSMITTER TRANSPORT - STRUCTURE, FUNCTION AND REGULATION, Journal of neurochemistry, 63, 1994, pp. 190000012-190000012
Citation: Bi. Kanner, SODIUM-COUPLED NEUROTRANSMITTER TRANSPORT - STRUCTURE, FUNCTION AND REGULATION, Journal of Experimental Biology, 196, 1994, pp. 237-249
Citation: N. Kleinbergerdoron et Bi. Kanner, IDENTIFICATION OF TRYPTOPHAN RESIDUES CRITICAL FOR THE FUNCTION AND TARGETING OF THE GAMMA-AMINOBUTYRIC-ACID TRANSPORTER (SUBTYPE-A), The Journal of biological chemistry, 269(4), 1994, pp. 3063-3067
Citation: Ym. Zhang et al., HISTIDINE 326 IS CRITICAL FOR THE FUNCTION OF GLT-1, A (NA-BRAIN(+K+)COUPLED GLUTAMATE TRANSPORTER FROM RAT), The Journal of biological chemistry, 269(30), 1994, pp. 19573-19577
Citation: Bi. Kanner et al., THE NUMBER OF AMINO-ACID-RESIDUES IN HYDROPHILIC LOOPS CONNECTING TRANSMEMBRANE DOMAINS OF THE GABA TRANSPORTER GAT-1 IS CRITICAL FOR ITS FUNCTION, FEBS letters, 356(2-3), 1994, pp. 191-194
Authors:
PICK CG
WEIZMAN A
FARES F
GAVISH M
KANNER BI
YANAI J
Citation: Cg. Pick et al., HIPPOCAMPAL GAMMA-AMINOBUTYRIC-ACID AND BENZODIAZEPINE RECEPTORS AFTER EARLY PHENOBARBITAL EXPOSURE, Developmental brain research, 74(1), 1993, pp. 111-116
Citation: Bi. Kanner, THE GABA AND L-GLUTAMATE TRANSPORTERS FROM RAT-BRAIN - PROTOTYPES FOR2 SUPERFAMILIES OF NEUROTRANSMITTER TRANSPORTERS, Journal of neurochemistry, 61, 1993, pp. 190000120-190000120
Authors:
CASADO M
BENDAHAN A
ZAFRA F
DANBOLT NC
ARAGON C
GIMENEZ C
KANNER BI
Citation: M. Casado et al., PHOSPHORYLATION AND MODULATION OF BRAIN GLUTAMATE TRANSPORTERS BY PROTEIN-KINASE-C, The Journal of biological chemistry, 268(36), 1993, pp. 27313-27317