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Summary Expression Phenotypes Gene Literature (44) GO Terms (0) Nucleotides (115) Proteins (39) Interactants (167) Wiki
XB-GENEPAGE-997135

Papers associated with dlg4



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The effects of the NMDAR co-agonist D-serine on the structure and function of optic tectal neurons in the developing visual system., Chorghay Z, Li VJ, Schohl A, Ghosh A, Ruthazer ES., Sci Rep. August 17, 2023; 13 (1): 13383.        


Bicarbonate-Independent Sodium Conductance of Na/HCO3 Cotransporter NBCn1 Decreases NMDA Receptor Function., Choi I, Yang H, Kim E, Lee S., Curr Issues Mol Biol. March 13, 2022; 44 (3): 1284-1293.


Proteomic screen reveals diverse protein transport between connected neurons in the visual system., Schiapparelli LM, Sharma P, He HY, Li J, Shah SH, McClatchy DB, Ma Y, Liu HH, Goldberg JL, Yates JR, Cline HT., Cell Rep. January 25, 2022; 38 (4): 110287.                                  


Role of matrix metalloproteinase-9 in neurodevelopmental deficits and experience-dependent plasticity in Xenopus laevis., Gore SV, James EJ, Huang LC, Park JJ, Berghella A, Thompson AC, Cline HT, Aizenman CD., Elife. July 20, 2021; 10           


Functional Integrity of Synapses in the Central Nervous System of Cognitively Intact Individuals with High Alzheimer's Disease Neuropathology Is Associated with Absence of Synaptic Tau Oligomers., Singh A, Allen D, Fracassi A, Tumurbaatar B, Natarajan C, Scaduto P, Woltjer R, Kayed R, Limon A, Krishnan B, Taglialatela G., J Alzheimers Dis. January 1, 2020; 78 (4): 1661-1678.          


The mechanosensitive ion channel TRAAK is localized to the mammalian node of Ranvier., Brohawn SG, Wang W, Handler A, Campbell EB, Schwarz JR, MacKinnon R., Elife. November 1, 2019; 8                     


Developmental gene expression patterns in the brain and liver of Xenopus tropicalis during metamorphosis climax., Yaoita Y, Nakajima K., Genes Cells. December 1, 2018; 23 (12): 998-1008.              


Excitatory synaptic dysfunction cell-autonomously decreases inhibitory inputs and disrupts structural and functional plasticity., He HY, Shen W, Zheng L, Guo X, Cline HT., Nat Commun. July 24, 2018; 9 (1): 2893.                


Ca2+/calmodulin binding to PSD-95 mediates homeostatic synaptic scaling down., Chowdhury D, Turner M, Patriarchi T, Hergarden AC, Anderson D, Zhang Y, Sun J, Chen CY, Ames JB, Hell JW., EMBO J. January 4, 2018; 37 (1): 122-138.


In Vivo Study of Dynamics and Stability of Dendritic Spines on Olfactory Bulb Interneurons in Xenopus laevis Tadpoles., Huang YB, Hu CR, Zhang L, Yin W, Hu B., PLoS One. October 20, 2015; 10 (10): e0140752.            


Netrin-1 directs dendritic growth and connectivity of vertebrate central neurons in vivo., Nagel AN, Marshak S, Manitt C, Santos RA, Piercy MA, Mortero SD, Shirkey-Son NJ, Cohen-Cory S., Neural Dev. June 10, 2015; 10 14.                          


Impact of maternal n-3 polyunsaturated fatty acid deficiency on dendritic arbor morphology and connectivity of developing Xenopus laevis central neurons in vivo., Igarashi M, Santos RA, Cohen-Cory S., J Neurosci. April 15, 2015; 35 (15): 6079-92.


Systematic family-wide analysis of sodium bicarbonate cotransporter NBCn1/SLC4A7 interactions with PDZ scaffold proteins., Lee HJ, Kwon MH, Lee S, Hall RA, Yun CC, Choi I., Physiol Rep. May 20, 2014; 2 (5):           


The human PDZome: a gateway to PSD95-Disc large-zonula occludens (PDZ)-mediated functions., Belotti E, Polanowska J, Daulat AM, Audebert S, Thomé V, Lissitzky JC, Lembo F, Blibek K, Omi S, Lenfant N, Gangar A, Montcouquiol M, Santoni MJ, Sebbagh M, Aurrand-Lions M, Angers S, Kodjabachian L, Reboul J, Borg JP., Mol Cell Proteomics. September 1, 2013; 12 (9): 2587-603.                  


Cell-autonomous alterations in dendritic arbor morphology and connectivity induced by overexpression of MeCP2 in Xenopus central neurons in vivo., Marshak S, Meynard MM, De Vries YA, Kidane AH, Cohen-Cory S., PLoS One. January 1, 2012; 7 (3): e33153.                    


PSD-95 interacts with NBCn1 and enhances channel-like activity without affecting Na/HCO(3) cotransport., Lee S, Yang HS, Kim E, Ju EJ, Kwon MH, Dudley RK, Smith Y, Yun CC, Choi I., Cell Physiol Biochem. January 1, 2012; 30 (6): 1444-55.


The biochemical anatomy of cortical inhibitory synapses., Heller EA, Zhang W, Selimi F, Earnheart JC, Ślimak MA, Santos-Torres J, Ibañez-Tallon I, Aoki C, Chait BT, Heintz N., PLoS One. January 1, 2012; 7 (6): e39572.            


Ultra-bright and -stable red and near-infrared squaraine fluorophores for in vivo two-photon imaging., Podgorski K, Terpetschnig E, Klochko OP, Obukhova OM, Haas K., PLoS One. January 1, 2012; 7 (12): e51980.      


Mutated in colorectal cancer (Mcc), a candidate tumor suppressor, is dynamically expressed during mouse embryogenesis., Young T, Poobalan Y, Ali Y, Siew Tein W, Sadasivam A, Ee Kim T, Erica Tay P, Dunn NR., Dev Dyn. September 1, 2011; 240 (9): 2166-74.


PKM zeta restricts dendritic arbor growth by filopodial and branch stabilization within the intact and awake developing brain., Liu XF, Tari PK, Haas K., J Neurosci. September 30, 2009; 29 (39): 12229-35.            


Deregulation of NMDA-receptor function and down-stream signaling in APP[V717I] transgenic mice., Dewachter I, Filipkowski RK, Priller C, Ris L, Neyton J, Croes S, Terwel D, Gysemans M, Devijver H, Borghgraef P, Godaux E, Kaczmarek L, Herms J, Van Leuven F., Neurobiol Aging. February 1, 2009; 30 (2): 241-56.


Inhibition of branching and spine maturation by repulsive guidance molecule in cultured cortical neurons., Yoshida J, Kubo T, Yamashita T., Biochem Biophys Res Commun. August 8, 2008; 372 (4): 725-9.


Interaction of brain somatostatin receptors with the PDZ domains of PSD-95., Christenn M, Kindler S, Schulz S, Buck F, Richter D, Kreienkamp HJ., FEBS Lett. November 13, 2007; 581 (27): 5173-7.


Erbin inhibits transforming growth factor beta signaling through a novel Smad-interacting domain., Dai F, Chang C, Lin X, Dai P, Mei L, Feng XH., Mol Cell Biol. September 1, 2007; 27 (17): 6183-94.


Antagonistic effects of TrkB and p75(NTR) on NMDA receptor currents in post-synaptic densities transplanted into Xenopus oocytes., Sandoval M, Sandoval R, Thomas U, Spilker C, Smalla KH, Falcon R, Marengo JJ, Calderón R, Saavedra V, Heumann R, Bronfman F, Garner CC, Gundelfinger ED, Wyneken U., J Neurochem. June 1, 2007; 101 (6): 1672-84.


Localization of the pannexin1 protein at postsynaptic sites in the cerebral cortex and hippocampus., Zoidl G, Petrasch-Parwez E, Ray A, Meier C, Bunse S, Habbes HW, Dahl G, Dermietzel R., Neuroscience. April 25, 2007; 146 (1): 9-16.


PSD-95 and PKC converge in regulating NMDA receptor trafficking and gating., Lin Y, Jover-Mengual T, Wong J, Bennett MV, Zukin RS., Proc Natl Acad Sci U S A. December 26, 2006; 103 (52): 19902-7.              


Opposite effects of PSD-95 and MPP3 PDZ proteins on serotonin 5-hydroxytryptamine2C receptor desensitization and membrane stability., Gavarini S, Bécamel C, Altier C, Lory P, Poncet J, Wijnholds J, Bockaert J, Marin P., Mol Biol Cell. November 1, 2006; 17 (11): 4619-31.


BDNF increases synapse density in dendrites of developing tectal neurons in vivo., Sanchez AL, Matthews BJ, Meynard MM, Hu B, Javed S, Cohen Cory S., Development. July 1, 2006; 133 (13): 2477-86.                  


Molecular constituents of neuronal AMPA receptors., Fukata Y, Tzingounis AV, Trinidad JC, Fukata M, Burlingame AL, Nicoll RA, Bredt DS., J Cell Biol. May 9, 2005; 169 (3): 399-404.        


Molecular and functional characterization of the electroneutral Na/HCO3 cotransporter NBCn1 in rat hippocampal neurons., Cooper DS, Saxena NC, Yang HS, Lee HJ, Moring AG, Lee A, Choi I., J Biol Chem. May 6, 2005; 280 (18): 17823-30.


Postsynaptic density protein-95 regulates NMDA channel gating and surface expression., Lin Y, Skeberdis VA, Francesconi A, Bennett MV, Zukin RS., J Neurosci. November 10, 2004; 24 (45): 10138-48.


Differential modulation of NR1-NR2A and NR1-NR2B subtypes of NMDA receptor by PDZ domain-containing proteins., Iwamoto T, Yamada Y, Hori K, Watanabe Y, Sobue K, Inui M., J Neurochem. April 1, 2004; 89 (1): 100-8.


N- and C-terminal domains of beta-catenin, respectively, are required to initiate and shape axon arbors of retinal ganglion cells in vivo., Elul TM, Kimes NE, Kohwi M, Reichardt LF., J Neurosci. July 23, 2003; 23 (16): 6567-75.          


Alternative splicing of a beta4 subunit proline-rich motif regulates voltage-dependent gating and toxin block of Cav2.1 Ca2+ channels., Helton TD, Kojetin DJ, Cavanagh J, Horne WA., J Neurosci. November 1, 2002; 22 (21): 9331-9.


PSD-95 eliminates Src-induced potentiation of NR1/NR2A-subtype NMDA receptor channels and reduces high-affinity zinc inhibition., Yamada Y, Iwamoto T, Watanabe Y, Sobue K, Inui M., J Neurochem. May 1, 2002; 81 (4): 758-64.


Modulation of Kv1.5 currents by protein kinase A, tyrosine kinase, and protein tyrosine phosphatase requires an intact cytoskeleton., Mason HS, Latten MJ, Godoy LD, Horowitz B, Kenyon JL., Mol Pharmacol. February 1, 2002; 61 (2): 285-93.


E3KARP mediates the association of ezrin and protein kinase A with the cystic fibrosis transmembrane conductance regulator in airway cells., Sun F, Hug MJ, Lewarchik CM, Yun CH, Bradbury NA, Frizzell RA., J Biol Chem. September 22, 2000; 275 (38): 29539-46.


The postsynaptic density protein PSD-95 differentially regulates insulin- and Src-mediated current modulation of mouse NMDA receptors expressed in Xenopus oocytes., Liao GY, Kreitzer MA, Sweetman BJ, Leonard JP., J Neurochem. July 1, 2000; 75 (1): 282-7.


Activation of channel activity of the NMDA receptor-PSD-95 complex by guanylate kinase-associated protein (GKAP)., Yamada Y, Chochi Y, Ko JA, Sobue K, Inui M., FEBS Lett. September 24, 1999; 458 (3): 295-8.


Cloning and characterization of neuropilin-1-interacting protein: a PSD-95/Dlg/ZO-1 domain-containing protein that interacts with the cytoplasmic domain of neuropilin-1., Cai H, Reed RR., J Neurosci. August 1, 1999; 19 (15): 6519-27.


Modulation of the channel activity of the epsilon2/zeta1-subtype N-methyl D-aspartate receptor by PSD-95., Yamada Y, Chochi Y, Takamiya K, Sobue K, Inui M., J Biol Chem. March 5, 1999; 274 (10): 6647-52.


Characterization of G-protein-gated K+ channels composed of Kir3.2 subunits in dopaminergic neurons of the substantia nigra., Inanobe A, Yoshimoto Y, Horio Y, Morishige KI, Hibino H, Matsumoto S, Tokunaga Y, Maeda T, Hata Y, Takai Y, Kurachi Y., J Neurosci. February 1, 1999; 19 (3): 1006-17.


Inactivation of a voltage-dependent K+ channel by beta subunit. Modulation by a phosphorylation-dependent interaction between the distal C terminus of alpha subunit and cytoskeleton., Jing J, Peretz T, Singer-Lahat D, Chikvashvili D, Thornhill WB, Lotan I., J Biol Chem. May 30, 1997; 272 (22): 14021-4.

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