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Volume 16, Number 23, Issue of December 1, 1996 pp. 7407-7415
Copyright ©1996 Society for Neuroscience

Cloning and Characterization of Postsynaptic Density 93, a Nitric Oxide Synthase Interacting Protein

Received July 8, 1996; revised Sept. 4, 1996; accepted Sept. 9, 1996.

Jay E. Brenman, Karen S. Christopherson, Sarah E. Craven, Aaron W. McGee, and David S. Bredt

Department of Physiology and Programs in Biomedical Sciences and Neuroscience, University of California at San Francisco School of Medicine, San Francisco, California 94143-0444

Nitric oxide (NO) formation in brain is regulated by the calcium/calmodulin dependence of neuronal NO synthase (nNOS). Calcium influx through NMDA-type glutamate receptors is efficiently coupled to nNOS activity, whereas many other intracellular calcium pathways are poorly coupled. To elucidate possible mechanisms responsible for this coupling, we performed yeast two-hybrid screening to identify proteins that interact with nNOS. Two nNOS interacting proteins were identified: the postsynaptic density proteins PSD-93 and PSD-95. Here, we report the cloning and characterization of PSD-93. PSD-93 is expressed in discrete neuronal populations as well as in specific non-neuronal cells, and it exhibits complex molecular diversity attributable to tissue-specific alternative splicing. PSD-93, like PSD-95, binds to nNOS and to the NMDA receptor 2B. PSD-93, however, is unique among PSD-95/SAP-90 family members in its expression in Purkinje neuron cell bodies and dendrites. We also demonstrate that the PDZ domain at the N terminus of nNOS is required, but it is not sufficient for interaction with PSD-93/95. Given that PSD-93 and PSD-95 each contain multiple potential binding sites for nNOS and the NMDA receptor, complexes involving oligomers of PSD-93/95 may help account for the functional as well as the physical coupling of nNOS to NMDA receptors.

Key words: neuronal nitric oxide synthase; NMDA receptor; postsynaptic density; Purkinje neurons; glutamate; calcium




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J. Biol. Chem., August 21, 1998; 273(34): 21980 - 21987.
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A. S. Leonard, M. A. Davare, M. C. Horne, C. C. Garner, and J. W. Hell
SAP97 Is Associated with the alpha -Amino-3-hydroxy-5-methylisoxazole-4-propionic Acid Receptor GluR1 Subunit
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A. R. Cohen, D. F. Wood, S. M. Marfatia, Z. Walther, A. H. Chishti, and J. M. Anderson
Human CASK/LIN-2 Binds Syndecan-2 and Protein 4.1 and Localizes to the Basolateral Membrane of Epithelial Cells
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U. Förstermann, J.-p. Boissel, and H. Kleinert
Expressional control of the `constitutive' isoforms of nitric oxide synthase (NOS I and NOS III)
FASEB J, July 1, 1998; 12(10): 773 - 790.
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A. Rao, E. Kim, M. Sheng, and A. M. Craig
Heterogeneity in the Molecular Composition of Excitatory Postsynaptic Sites during Development of Hippocampal Neurons in Culture
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G. Yang, C. Iadecola, and F. M. Faraci
Activation of Cerebellar Climbing Fibers Increases Cerebellar Blood Flow : Role of Glutamate Receptors, Nitric Oxide, and cGMP • Editorial Comment: Role of Glutamate Receptors, Nitric Oxide, and cGMP
Stroke, February 1, 1998; 29(2): 499 - 508.
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H Wu, S. Reuver, S Kuhlendahl, W. Chung, and C. Garner
Subcellular targeting and cytoskeletal attachment of SAP97 to the epithelial lateral membrane
J. Cell Sci., January 8, 1998; 111(16): 2365 - 2376.
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S. H. Gee, R. Madhavan, S. R. Levinson, J. H. Caldwell, R. Sealock, and S. C. Froehner
Interaction of Muscle and Brain Sodium Channels with Multiple Members of the Syntrophin Family of Dystrophin-Associated Proteins
J. Neurosci., January 1, 1998; 18(1): 128 - 137.
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J. Staudinger, J. Lu, and E. N. Olson
Specific Interaction of the PDZ Domain Protein PICK1 with the COOH Terminus of Protein Kinase C-alpha
J. Biol. Chem., December 19, 1997; 272(51): 32019 - 32024.
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I. Dobrosotskaya, R. K. Guy, and G. L. James
MAGI-1, a Membrane-associated Guanylate Kinase with a Unique Arrangement of Protein-Protein Interaction Domains
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K. Wu, C. Aoki, A. Elste, A. A. Rogalski-Wilk, and P. Siekevitz
The synthesis of ATP by glycolytic enzymes in the postsynaptic density and the effect of endogenously generated nitric oxide
PNAS, November 25, 1997; 94(24): 13273 - 13278.
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V. J. Venema, H. Ju, R. Zou, and R. C. Venema
Interaction of Neuronal Nitric-oxide Synthase with Caveolin-3 in Skeletal Muscle. IDENTIFICATION OF A NOVEL CAVEOLIN SCAFFOLDING/INHIBITORY DOMAIN
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S. Naisbitt, E. Kim, R. J. Weinberg, A. Rao, F.-C. Yang, A. M. Craig, and M. Sheng
Characterization of Guanylate Kinase-Associated Protein, a Postsynaptic Density Protein at Excitatory Synapses That Interacts Directly with Postsynaptic Density-95/Synapse-Associated Protein 90
J. Neurosci., August 1, 1997; 17(15): 5687 - 5696.
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K. Komeima, Y. Hayashi, Y. Naito, and Y. Watanabe
Inhibition of Neuronal Nitric-oxide Synthase by Calcium/ Calmodulin-dependent Protein Kinase IIalpha through Ser847 Phosphorylation in NG108-15 Neuronal Cells
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S. J. DeMarco and E. E. Strehler
Plasma Membrane Ca2+-ATPase Isoforms 2b and 4b Interact Promiscuously and Selectively with Members of the Membrane-associated Guanylate Kinase Family of PDZ (PSD95/Dlg/ZO-1) Domain-containing Proteins
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M. Russwurm, N. Wittau, and D. Koesling
Guanylyl Cyclase/PSD-95 Interaction. TARGETING OF THE NITRIC OXIDE-SENSITIVE alpha 2beta 1 GUANYLYL CYCLASE TO SYNAPTIC MEMBRANES
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S. Breton, T. Wiederhold, V. Marshansky, N. N. Nsumu, V. Ramesh, and D. Brown
The B1 Subunit of the H+ATPase Is a PDZ Domain-binding Protein. COLOCALIZATION WITH NHE-RF IN RENAL B-INTERCALATED CELLS
J. Biol. Chem., June 9, 2000; 275(24): 18219 - 18224.
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A. E. El-Husseini, J. R. Topinka, J. E. Lehrer-Graiwer, B. L. Firestein, S. E. Craven, C. Aoki, and D. S. Bredt
Ion Channel Clustering by Membrane-associated Guanylate Kinases. DIFFERENTIAL REGULATION BY N-TERMINAL LIPID AND METAL BINDING MOTIFS
J. Biol. Chem., July 28, 2000; 275(31): 23904 - 23910.
[Abstract] [Full Text] [PDF]



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