GKAP, a novel synaptic protein that interacts with the guanylate kinase-like domain of the PSD-95/SAP90 family of channel clustering molecules

被引:427
作者
Kim, E
Naisbitt, S
Hsueh, YP
Rao, A
Rothschild, A
Craig, AM
Sheng, M
机构
[1] MASSACHUSETTS GEN HOSP,HHMI,BOSTON,MA 02114
[2] MASSACHUSETTS GEN HOSP,DEPT NEUROBIOL,BOSTON,MA 02114
[3] HARVARD UNIV,SCH MED,BOSTON,MA 02114
[4] UNIV ILLINOIS,DEPT CELL & STRUCT BIOL,URBANA,IL 61801
关键词
D O I
10.1083/jcb.136.3.669
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
The molecular mechanisms underlying the organization of ion channels and signaling molecules at the synaptic junction are largely unknown. Recently, members of the PSD-95/SAP90 family of synaptic MAGUK (membrane-associated guanylate kinase) proteins have been shown to interact, via their NH2-terminal PDZ domains, with certain ion channels (NMDA receptors and K+ channels), thereby promoting the clustering of these proteins. Although the function of the NH2-terminal PDZ domains is relatively well characterized, the function of the Src homology 3 (SH3) domain and the guanylate kinase-like (GK) domain in the COOH-terminal half of PSD-95 has remained obscure. We now report the isolation of a novel synaptic protein, termed GKAP for guanylate kinase-associated protein, that binds directly to the GK domain of the four known members of the mammalian PSD-95 family. GKAP shows a unique domain structure and appears to be a major constituent of the postsynaptic density. GKAP colocalizes and coimmunoprecipitates with PSD-95 in vivo, and coclusters with PSD-95 and K+ channels/ NMDA receptors in heterologous cells. Given their apparent lack of guanylate kinase enzymatic activity, the fact that the GK domain can act as a site for protein-protein interaction has implications for the function of diverse GK-containing proteins (such as p55, ZO-1, and LIN-2/CASK).
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页码:669 / 678
页数:10
相关论文
共 34 条
[1]   Cell signalling: MAGUK magic [J].
Anderson, JM .
CURRENT BIOLOGY, 1996, 6 (04) :382-384
[2]   RAT HIPPOCAMPAL NEURONS IN DISPERSED CELL-CULTURE [J].
BANKER, GA ;
COWAN, WM .
BRAIN RESEARCH, 1977, 126 (03) :397-425
[3]  
Bartel P, 1993, CELLULAR INTERACTION, P153
[4]   Interaction of nitric oxide synthase with the postsynaptic density protein PSD-95 and alpha 1-syntrophin mediated by PDZ domains [J].
Brenman, JE ;
Chao, DS ;
Gee, SH ;
McGee, AW ;
Craven, SE ;
Santillano, DR ;
Wu, ZQ ;
Huang, F ;
Xia, HH ;
Peters, MF ;
Froehner, SC ;
Bredt, DS .
CELL, 1996, 84 (05) :757-767
[5]   THE RAT-BRAIN POSTSYNAPTIC DENSITY FRACTION CONTAINS A HOMOLOG OF THE DROSOPHILA DISKS-LARGE TUMOR SUPPRESSOR PROTEIN [J].
CHO, KO ;
HUNT, CA ;
KENNEDY, MB .
NEURON, 1992, 9 (05) :929-942
[6]   MODULAR BINDING DOMAINS IN SIGNAL-TRANSDUCTION PROTEINS [J].
COHEN, GB ;
REN, RB ;
BALTIMORE, D .
CELL, 1995, 80 (02) :237-248
[7]   Crystal structures of a complexed and peptide-free membrane protein-binding domain: Molecular basis of peptide recognition by PDZ [J].
Doyle, DA ;
Lee, A ;
Lewis, J ;
Kim, E ;
Sheng, M ;
MacKinnon, R .
CELL, 1996, 85 (07) :1067-1076
[8]   REGULATION OF ION CHANNEL DISTRIBUTION AT SYNAPSES [J].
FROEHNER, SC .
ANNUAL REVIEW OF NEUROSCIENCE, 1993, 16 :347-368
[9]   The Drosophila tumor suppressor gene, dig, is involved in structural plasticity at a glutamatergic synapse [J].
Guan, B ;
Hartmann, B ;
Kho, YH ;
Gorczyca, M ;
Budnik, V .
CURRENT BIOLOGY, 1996, 6 (06) :695-706
[10]  
HALL ZW, 1993, NEURON S, V10, P99