The PDZ proteins PICK1, GRIP, and syntenin bind multiple glutamate receptor subtypes. Analysis of PDZ binding motifs.
The PDZ proteins PICK1, GRIP, and syntenin bind multiple glutamate receptor subtypes. Analysis of PDZ binding motifs.
Using sequence homology searches, yeast two-hybrid assays and glutathione S-transferase (GST)-pull-down approaches we have identified a series of glutamate receptor subunits that interact differentially with the PDZ proteins GRIP, PICK1, and syntenin. GST-pull-down experiments identified more interactions than detected by yeast two-hybrid assays. We report several receptor-protein interactions, strong ones include: (i) GRIP and syntenin with mGluR7a, mGluR4a, and mGluR6; (ii) PICK1 and GRIP with mGluR3; and (iii) syntenin with all forms of GluR1-4 and mGluR7b. We further characterized the novel mGluR7a-GRIP interaction found both in yeast two-hybrid and GST-pull-down assays and observed that mGluR7a localization overlapped with GRIP with in hippocampal neurons. The wide range of targets for PICK1, GRIP, and syntenin suggests they may represent a molecular mechanism that can concentrate and/or regulate a number of different receptors at a common site on a synapse. These data also suggest that the structural determinants involved in PDZ interactions are more complex than originally envisaged.
- University of Bristol United Kingdom
Binding Sites, Syntenins, Molecular Sequence Data, Intracellular Signaling Peptides and Proteins, Membrane Proteins, Nuclear Proteins, Nerve Tissue Proteins, Transfection, Recombinant Proteins, Protein Subunits, Receptors, Glutamate, COS Cells, Animals, Amino Acid Sequence, Carrier Proteins, Sequence Alignment, Adaptor Proteins, Signal Transducing
Binding Sites, Syntenins, Molecular Sequence Data, Intracellular Signaling Peptides and Proteins, Membrane Proteins, Nuclear Proteins, Nerve Tissue Proteins, Transfection, Recombinant Proteins, Protein Subunits, Receptors, Glutamate, COS Cells, Animals, Amino Acid Sequence, Carrier Proteins, Sequence Alignment, Adaptor Proteins, Signal Transducing
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