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SynGAP regulates ERK/MAPK signaling, synaptic plasticity, and learning in the complex with postsynaptic density 95 and NMDA receptor.

Komiyama NH, Watabe AM, Carlisle HJ, Porter K, Charlesworth P, Monti J, Strathdee DJ, O'Carroll CM, Martin SJ, Morris RG, O'Dell TJ, Grant SG.

J Neurosci. 2002 Nov 15;22(22):9721-32.


Opposing effects of PSD-93 and PSD-95 on long-term potentiation and spike timing-dependent plasticity.

Carlisle HJ, Fink AE, Grant SG, O'Dell TJ.

J Physiol. 2008 Dec 15;586(24):5885-900. doi: 10.1113/jphysiol.2008.163469. Epub 2008 Oct 20.


Rapid dispersion of SynGAP from synaptic spines triggers AMPA receptor insertion and spine enlargement during LTP.

Araki Y, Zeng M, Zhang M, Huganir RL.

Neuron. 2015 Jan 7;85(1):173-89. doi: 10.1016/j.neuron.2014.12.023.


Conditional ablation of neuroligin-1 in CA1 pyramidal neurons blocks LTP by a cell-autonomous NMDA receptor-independent mechanism.

Jiang M, Polepalli J, Chen LY, Zhang B, Südhof TC, Malenka RC.

Mol Psychiatry. 2017 Mar;22(3):375-383. doi: 10.1038/mp.2016.80. Epub 2016 May 24.


Beta-adrenergic receptor activation rescues theta frequency stimulation-induced LTP deficits in mice expressing C-terminally truncated NMDA receptor GluN2A subunits.

Moody TD, Watabe AM, Indersmitten T, Komiyama NH, Grant SG, O'Dell TJ.

Learn Mem. 2011 Jan 21;18(2):118-27. doi: 10.1101/lm.2045311. Print 2011 Feb.


Hippocampal long-term synaptic plasticity and signal amplification of NMDA receptors.

MacDonald JF, Jackson MF, Beazely MA.

Crit Rev Neurobiol. 2006;18(1-2):71-84. Review.


Differential expression of two NMDA receptor interacting proteins, PSD-95 and SynGAP during mouse development.

Porter K, Komiyama NH, Vitalis T, Kind PC, Grant SG.

Eur J Neurosci. 2005 Jan;21(2):351-62.


Low-frequency stimulation induces a new form of LTP, metabotropic glutamate (mGlu5) receptor- and PKA-dependent, in the CA1 area of the rat hippocampus.

Lanté F, de Jésus Ferreira MC, Guiramand J, Récasens M, Vignes M.

Hippocampus. 2006;16(4):345-60.


Impaired synaptic clustering of postsynaptic density proteins and altered signal transmission in hippocampal neurons, and disrupted learning behavior in PDZ1 and PDZ2 ligand binding-deficient PSD-95 knockin mice.

Nagura H, Ishikawa Y, Kobayashi K, Takao K, Tanaka T, Nishikawa K, Tamura H, Shiosaka S, Suzuki H, Miyakawa T, Fujiyoshi Y, Doi T.

Mol Brain. 2012 Dec 26;5:43. doi: 10.1186/1756-6606-5-43.


The role of synaptic GTPase-activating protein in neuronal development and synaptic plasticity.

Kim JH, Lee HK, Takamiya K, Huganir RL.

J Neurosci. 2003 Feb 15;23(4):1119-24.


Pin1 Modulates the Synaptic Content of NMDA Receptors via Prolyl-Isomerization of PSD-95.

Antonelli R, De Filippo R, Middei S, Stancheva S, Pastore B, Ammassari-Teule M, Barberis A, Cherubini E, Zacchi P.

J Neurosci. 2016 May 18;36(20):5437-47. doi: 10.1523/JNEUROSCI.3124-15.2016.


Inducible, pharmacogenetic approaches to the study of learning and memory.

Ohno M, Frankland PW, Chen AP, Costa RM, Silva AJ.

Nat Neurosci. 2001 Dec;4(12):1238-43.


Postsynaptic expression of a new calcium pathway in hippocampal CA3 neurons and its influence on mossy fiber long-term potentiation.

Kakegawa W, Yamada N, Iino M, Kameyama K, Umeda T, Tsuzuki K, Ozawa S.

J Neurosci. 2002 Jun 1;22(11):4312-20.


Phosphorylation of synaptic GTPase-activating protein (synGAP) by Ca2+/calmodulin-dependent protein kinase II (CaMKII) and cyclin-dependent kinase 5 (CDK5) alters the ratio of its GAP activity toward Ras and Rap GTPases.

Walkup WG 4th, Washburn L, Sweredoski MJ, Carlisle HJ, Graham RL, Hess S, Kennedy MB.

J Biol Chem. 2015 Feb 20;290(8):4908-27. doi: 10.1074/jbc.M114.614420. Epub 2014 Dec 22.


Enhanced long-term potentiation and impaired learning in mice with mutant postsynaptic density-95 protein.

Migaud M, Charlesworth P, Dempster M, Webster LC, Watabe AM, Makhinson M, He Y, Ramsay MF, Morris RG, Morrison JH, O'Dell TJ, Grant SG.

Nature. 1998 Dec 3;396(6710):433-9.


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