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Several posttranslational modifications act in concert to regulate gephyrin scaffolding and GABAergic transmission
by
Tyagarajan, Shiva K.
, Auguadri, Luca
, Yévenes, Gonzalo E.
, Zemoura, Khaled
, Acuña, Mario A.
, Wildner, Hendrik
, Ghosh, Himanish
, Messner, Simon
, Battaglia, Sereina
, Kawasaki, Hiroshi
, Dieter, Andrea
, O. Hottiger, Michael
, Fritschy, Jean-Marc
, Simone Thirouin, Zahra
, Zeilhofer, Hanns Ulrich
in
13
/ 13/1
/ 13/109
/ 14
/ 14/19
/ 14/35
/ 38
/ 38/77
/ 631/378/340
/ 631/378/87
/ 631/45/612/1246
/ 631/45/612/1252
/ Enzymes
/ Humanities and Social Sciences
/ multidisciplinary
/ Neurosciences
/ Phosphorylation
/ Physiology
/ Proteins
/ Science
/ Science (multidisciplinary)
/ Signal transduction
2016
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Several posttranslational modifications act in concert to regulate gephyrin scaffolding and GABAergic transmission
by
Tyagarajan, Shiva K.
, Auguadri, Luca
, Yévenes, Gonzalo E.
, Zemoura, Khaled
, Acuña, Mario A.
, Wildner, Hendrik
, Ghosh, Himanish
, Messner, Simon
, Battaglia, Sereina
, Kawasaki, Hiroshi
, Dieter, Andrea
, O. Hottiger, Michael
, Fritschy, Jean-Marc
, Simone Thirouin, Zahra
, Zeilhofer, Hanns Ulrich
in
13
/ 13/1
/ 13/109
/ 14
/ 14/19
/ 14/35
/ 38
/ 38/77
/ 631/378/340
/ 631/378/87
/ 631/45/612/1246
/ 631/45/612/1252
/ Enzymes
/ Humanities and Social Sciences
/ multidisciplinary
/ Neurosciences
/ Phosphorylation
/ Physiology
/ Proteins
/ Science
/ Science (multidisciplinary)
/ Signal transduction
2016
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Several posttranslational modifications act in concert to regulate gephyrin scaffolding and GABAergic transmission
by
Tyagarajan, Shiva K.
, Auguadri, Luca
, Yévenes, Gonzalo E.
, Zemoura, Khaled
, Acuña, Mario A.
, Wildner, Hendrik
, Ghosh, Himanish
, Messner, Simon
, Battaglia, Sereina
, Kawasaki, Hiroshi
, Dieter, Andrea
, O. Hottiger, Michael
, Fritschy, Jean-Marc
, Simone Thirouin, Zahra
, Zeilhofer, Hanns Ulrich
in
13
/ 13/1
/ 13/109
/ 14
/ 14/19
/ 14/35
/ 38
/ 38/77
/ 631/378/340
/ 631/378/87
/ 631/45/612/1246
/ 631/45/612/1252
/ Enzymes
/ Humanities and Social Sciences
/ multidisciplinary
/ Neurosciences
/ Phosphorylation
/ Physiology
/ Proteins
/ Science
/ Science (multidisciplinary)
/ Signal transduction
2016
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Several posttranslational modifications act in concert to regulate gephyrin scaffolding and GABAergic transmission
Journal Article
Several posttranslational modifications act in concert to regulate gephyrin scaffolding and GABAergic transmission
2016
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Overview
GABA
A
receptors (GABA
A
Rs) mediate the majority of fast inhibitory neurotransmission in the brain via synergistic association with the postsynaptic scaffolding protein gephyrin and its interaction partners. However, unlike their counterparts at glutamatergic synapses, gephyrin and its binding partners lack canonical protein interaction motifs; hence, the molecular basis for gephyrin scaffolding has remained unclear. In this study, we identify and characterize two new posttranslational modifications of gephyrin, SUMOylation and acetylation. We demonstrate that crosstalk between SUMOylation, acetylation and phosphorylation pathways regulates gephyrin scaffolding. Pharmacological intervention of SUMO pathway or transgenic expression of SUMOylation-deficient gephyrin variants rescued gephyrin clustering in CA1 or neocortical neurons of
Gabra2
-null mice, which otherwise lack gephyrin clusters, indicating that gephyrin SUMO modification is an essential determinant for scaffolding at GABAergic synapses. Together, our results demonstrate that concerted modifications on a protein scaffold by evolutionarily conserved yet functionally diverse signalling pathways facilitate GABAergic transmission.
Gephyrin is a cytoplasmic scaffolding protein that selectively forms postsynaptic scaffolds at GABAergic and glycinergic synapses. Here the authors characterize regulatory mechanisms determining gephyrin scaffolding and GABAA receptor synaptic transmission that involve acetylation, SUMOylation and phosphorylation.
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