Citations for
1GRIN3A, PACSIN1
GluN3A promotes dendritic spine pruning and destabilization during postnatal development.
Kehoe LA, Bellone C, De Roo M, Zandueta A, Dey PN, Pérez-Otaño I, Muller D.
J Neurosci 34(28):9213-21. doi: 10.1523/JNEUROSCI.5183-13.2014. 2014
2ARHGEF7, GIT1, GRIN3A, RAC1
GluN3A expression restricts spine maturation via inhibition of GIT1/Rac1 signaling.
Fiuza M, González-González I, Pérez-Otaño I.
Proc Natl Acad Sci U S A 110(51):20807-12. doi: 10.1073/pnas.1312211110. 2013
3GRIN3A
Significant association of glutamate receptor, ionotropic N-methyl-D-aspartate 3A (GRIN3A), with nicotine dependence in European- and African-American smokers.
Ma JZ, Payne TJ, Li MD.
Hum Genet 127(5):503-12. Epub 2010 Jan 19. 2010
4GRIN3A, GRIN3B
Requirement of both NR3A and NR3B subunits for dominant negative properties on Ca2+ mobilization mediated by acquired N-methyl-D-aspartate receptor channels into mitochondria.
Fukumori R, Takarada T, Nakamichi N, Kambe Y, Kawagoe H, Nakazato R, Yoneda Y.
Neurochem Int 57(7):730-7. Epub 2010 Sep 8. 2010
5GRIN3A, GRIN3B
The identification and functional implications of human-specific "fixed" amino acid substitutions in the glutamate receptor family.
Goto H, Watanabe K, Araragi N, Kageyama R, Tanaka K, Kuroki Y, Toyoda A, Hattori M, Sakaki Y, Fujiyama A, Fukumaki Y, Shibata H.
BMC Evol Biol 9:224.PMID: 19737383 2009
6GRIN3A
Exomic sequencing of the glutamate receptor, ionotropic, N-methyl-d-aspartate 3A gene (GRIN3A) reveals no association with schizophrenia.
Shen YC, Liao DL, Chen JY, Wang YC, Lai IC, Liou YJ, Chen YJ, Luu SU, Chen CH.
Schizophr Res 114(1-3):25-32. Epub 2009 Aug 7.PMID: 19665356 2009
7GRIN1, GRIN3A
Interference with cellular differentiation by D-serine through antagonism at N-methyl-D-aspartate receptors composed of NR1 and NR3A subunits in chondrocytes.
Takarada T, Takahata Y, Iemata M, Hinoi E, Uno K, Hirai T, Yamamoto T, Yoneda Y.
J Cell Physiol 220(3):756-64.PMID: 19452450 2009
8GRIN3A, GRIN3B
Genetic variation in N-methyl-D-aspartate receptor subunit NR3A but not NR3B influences susceptibility to Alzheimer's disease.
Liu HP, Lin WY, Liu SH, Wang WF, Tsai CH, Wu BT, Wang CK, Tsai FJ.
Dement Geriatr Cogn Disord 28(6):521-7. Epub 2009 Dec 10. 2009
9GRIN3A, GRIN3B, NR4A1
Cross-talk between the NR3B and NR4A families of orphan nuclear receptors.
Lammi J, Rajalin AM, Huppunen J, Aarnisalo P.
Biochem Biophys Res Commun 359(2):391-7. Epub 2007 May 25. 2007
10GRIN1, GRIN2A, GRIN2B, GRIN2C, GRIN2D, GRIN3A, GRIK1, GRIK2, GRIK3, GRIK5, GRIK4
NMDA receptors are expressed in developing oligodendrocyte processes and mediate injury.
Salter MG, Fern R.
Nature 438(7071):1167-71. 2005
11GRIN3A, GRIN3B
Excitatory glycine receptors containing the NR3 family of NMDA receptor subunits.
Chatterton JE, Awobuluyi M, Premkumar LS, Takahashi H, Talantova M, Shin Y, Cui J, Tu S, Sevarino KA, Nakanishi N, Tong G, Lipton SA, Zhang D.
Nature 415(6873):793-8. 2002
12GRIN3A
Cloning and expression of the human N-methyl-D-aspartate receptor subunit NR3A.
Eriksson M, Nilsson A, Froelich-Fabre S, Akesson E, Dunker J, Seiger A, Folkesson R, Benedikz E, Sundstrom E.
Neurosci Lett 321(3):177-81. Erratum in: Neurosci Lett 2002 Oct 4;331(1):69-70. 2002
13GRIN3A, GRIN3B
Nucleotide sequence, genomic organization, and chromosomal localization of genes encoding the human NMDA receptor subunits NR3A and NR3B.
Andersson O, Stenqvist A, Attersand A, von Euler G.
Genomics 78(3):178-84. 2001
14GRIN3A, GRIN3B
Motoneuron-specific expression of NR3B, a novel NMDA-type glutamate receptor subunit that works in a dominant-negative manner.
Nishi M, Hinds H, Lu HP, Kawata M, Hayashi Y.
J Neurosci 21(23):RC185. 2001
15AKNA, ANKRD24, ANKS3, ATP8B4, B3GAT2, BRINP1, FAM171B, GRIN3A, ITIH5, KIAA1958, KIAA1984, NPEPL1, RAVER1, TTC14, UBASH3B, YTHDC1, ZNF431, ZNF545, ZNF618
Prediction of the coding sequences of unidentified human genes. XXII. The complete sequences of 50 new cDNA clones which code for large proteins.
Nagase T, Kikuno R, Ohara O.
DNA Res 8(6):319-27. 2001
16GRIN3A
Increased NMDA current and spine density in mice lacking the NMDA receptor subunit NR3A.
Das S, Sasaki YF, Rothe T, Premkumar LS, Takasu M, Crandall JE, Dikkes P, Conner DA, Rayudu PV, Cheung W, Chen HS, Lipton SA, Nakanishi N.
Nature 393(6683):377-81. 1998