TY - JOUR
T1 - The dual-function glutamate transporters
T2 - Structure and molecular characterisation of the substrate-binding sites
AU - Kanner, B. I.
AU - Borre, L.
PY - 2002/9/10
Y1 - 2002/9/10
N2 - Glutamate transporters are essential for terminating synaptic excitation and for maintaining extracellular glutamate concentrations below neurotoxic levels. These transporters also mediate a thermodynamically uncoupled chloride flux, activated by two of the molecules they transport, sodium and glutamate. Five eukaryotic glutamate transporters have been cloned and identified. They exhibit ∼50% identity and this homology is even greater at the carboxyl terminal half, which is predicted to have an unusual topology. Determination of the topology shows that the carboxyl terminal part contains several transmembrane domains separated by two reentrant loops that are in close proximity to each other. We have identified several conserved amino acid residues in the carboxyl terminal half that play crucial roles in the interaction of the transporter with its substrates: sodium, potassium and glutamate. The conformation of the transporter gating the anion conductance is different from that during substrate translocation. However, there exists a dynamic equilibrium between these conformations.
AB - Glutamate transporters are essential for terminating synaptic excitation and for maintaining extracellular glutamate concentrations below neurotoxic levels. These transporters also mediate a thermodynamically uncoupled chloride flux, activated by two of the molecules they transport, sodium and glutamate. Five eukaryotic glutamate transporters have been cloned and identified. They exhibit ∼50% identity and this homology is even greater at the carboxyl terminal half, which is predicted to have an unusual topology. Determination of the topology shows that the carboxyl terminal part contains several transmembrane domains separated by two reentrant loops that are in close proximity to each other. We have identified several conserved amino acid residues in the carboxyl terminal half that play crucial roles in the interaction of the transporter with its substrates: sodium, potassium and glutamate. The conformation of the transporter gating the anion conductance is different from that during substrate translocation. However, there exists a dynamic equilibrium between these conformations.
KW - Anion conductance
KW - Dynamic equilibrium
KW - Proximity relation
KW - Sequential binding
KW - Sodium and potassium coupling
KW - Topology
UR - http://www.scopus.com/inward/record.url?scp=0037055984&partnerID=8YFLogxK
U2 - 10.1016/S0005-2728(02)00260-8
DO - 10.1016/S0005-2728(02)00260-8
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C2 - 12206897
AN - SCOPUS:0037055984
SN - 0005-2728
VL - 1555
SP - 92
EP - 95
JO - Biochimica et Biophysica Acta - Bioenergetics
JF - Biochimica et Biophysica Acta - Bioenergetics
IS - 1-3
ER -