TY - JOUR
T1 - Primary structure and alternative splice variants of gephyrin, a putative glycine receptor-tubulin linker protein
AU - Prior, P.
AU - Schmitt, B.
AU - Grenningloh, G.
AU - Pribilla, I.
AU - Multhaup, G.
AU - Beyreuther, K.
AU - Maulet, Y.
AU - Werner, P.
AU - Langosch, D.
AU - Kirsch, J.
AU - Betz, H.
N1 - Funding Information:
We thank H. Krischkeand C. Udri for expert technical assistance, H. Rohrer, A. Ultsch, and E. Sawruk for critical reading of the manuscript, and S. Wartha for help with its preparation. This work was supported by the Deutsche Forschungsgemeinschaft (Leibniz-Programm and Schwerpunkt Funktionelle Domlnen), the Bundesministerium fur Forschung und Technologie (BCT 365/l), and Fonds der Chemischen Industrie.
PY - 1992/6
Y1 - 1992/6
N2 - A 93 kd polypeptide associated with the mammalian inhibitory glycine receptor (GIyR) is localized at central synapses and binds with high affinity to polymerized tubulin. This protein, named gephyrin (from the Greek γ′ε(ρ{variant}νρ{variant}α, bridge), is thought to anchor the GlyR to subsynaptic microtubules. Here we report its primary structure deduced from cDNA and show that corresponding transcripts are found in all rat tissues examined. In brain, at least five different gephyrin mRNAs are generated by alternative splicing. Expression of gephyrin cDNAs in 293 kidney cells yields polypeptides reactive with a gephyrin-specific antibody, which coprecipitate with polymerized tubulin. Thus, gephyrin may define a novel type of microtubule-associated protein involved in membrane protein-cytoskeleton interactions.
AB - A 93 kd polypeptide associated with the mammalian inhibitory glycine receptor (GIyR) is localized at central synapses and binds with high affinity to polymerized tubulin. This protein, named gephyrin (from the Greek γ′ε(ρ{variant}νρ{variant}α, bridge), is thought to anchor the GlyR to subsynaptic microtubules. Here we report its primary structure deduced from cDNA and show that corresponding transcripts are found in all rat tissues examined. In brain, at least five different gephyrin mRNAs are generated by alternative splicing. Expression of gephyrin cDNAs in 293 kidney cells yields polypeptides reactive with a gephyrin-specific antibody, which coprecipitate with polymerized tubulin. Thus, gephyrin may define a novel type of microtubule-associated protein involved in membrane protein-cytoskeleton interactions.
UR - https://www.scopus.com/pages/publications/0026748781
U2 - 10.1016/0896-6273(92)90136-2
DO - 10.1016/0896-6273(92)90136-2
M3 - Article
C2 - 1319186
AN - SCOPUS:0026748781
SN - 0896-6273
VL - 8
SP - 1161
EP - 1170
JO - Neuron
JF - Neuron
IS - 6
ER -