RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors.
In developing brain neuronal migration, dendrite outgrowth and dendritic spine outgrowth are controlled by Cdc42, a small GTPase of the Rho family, and its activators. Cdc42 function in promoting actin polymerization is crucial for glutamatergic synapse regulation. Here, we focus on GABAergic synaps...
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doaj-7cb2b632fcce41a0b646288801f9b4752020-11-25T01:57:38ZengPublic Library of Science (PLoS)PLoS Genetics1553-73901553-74042017-10-011310e100707310.1371/journal.pgen.1007073RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors.Claire de GrootAmalia Floriou-ServouYuan-Chen TsaiSimon FrühManuela KohlerGeorgia ParkinCornelia SchwerdelGiovanna BosshardKai KailaJean-Marc FritschyShiva K TyagarajanIn developing brain neuronal migration, dendrite outgrowth and dendritic spine outgrowth are controlled by Cdc42, a small GTPase of the Rho family, and its activators. Cdc42 function in promoting actin polymerization is crucial for glutamatergic synapse regulation. Here, we focus on GABAergic synapse-specific activator of Cdc42, collybistin (CB) and examine functional differences between its splice isoforms CB1 and CB2. We report that CB1 and CB2 differentially regulate GABAergic synapse formation in vitro along proximal-distal axis and adult-born neuron maturation in vivo. The functional specialization between CB1 and CB2 isoforms arises from their differential protein half-life, in turn regulated by ubiquitin conjugation of the unique CB1 C-terminus. We report that CB1 and CB2 negatively regulate Cdc42; however, Cdc42 activation is dependent on CB interaction with gephyrin. During hippocampal adult neurogenesis CB1 regulates neuronal migration, while CB2 is essential for dendrite outgrowth. Finally, using mice lacking Gabra2 subunit, we show that CB1 function is downstream of GABAARs, and we can rescue adult neurogenesis deficit observed in Gabra2 KO. Overall, our results uncover previously unexpected role for CB isoforms downstream of α2-containing GABAARs during neuron maturation in a Cdc42 dependent mechanism.http://europepmc.org/articles/PMC5673238?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Claire de Groot Amalia Floriou-Servou Yuan-Chen Tsai Simon Früh Manuela Kohler Georgia Parkin Cornelia Schwerdel Giovanna Bosshard Kai Kaila Jean-Marc Fritschy Shiva K Tyagarajan |
spellingShingle |
Claire de Groot Amalia Floriou-Servou Yuan-Chen Tsai Simon Früh Manuela Kohler Georgia Parkin Cornelia Schwerdel Giovanna Bosshard Kai Kaila Jean-Marc Fritschy Shiva K Tyagarajan RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors. PLoS Genetics |
author_facet |
Claire de Groot Amalia Floriou-Servou Yuan-Chen Tsai Simon Früh Manuela Kohler Georgia Parkin Cornelia Schwerdel Giovanna Bosshard Kai Kaila Jean-Marc Fritschy Shiva K Tyagarajan |
author_sort |
Claire de Groot |
title |
RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors. |
title_short |
RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors. |
title_full |
RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors. |
title_fullStr |
RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors. |
title_full_unstemmed |
RhoGEF9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 GABAA receptors. |
title_sort |
rhogef9 splice isoforms influence neuronal maturation and synapse formation downstream of α2 gabaa receptors. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS Genetics |
issn |
1553-7390 1553-7404 |
publishDate |
2017-10-01 |
description |
In developing brain neuronal migration, dendrite outgrowth and dendritic spine outgrowth are controlled by Cdc42, a small GTPase of the Rho family, and its activators. Cdc42 function in promoting actin polymerization is crucial for glutamatergic synapse regulation. Here, we focus on GABAergic synapse-specific activator of Cdc42, collybistin (CB) and examine functional differences between its splice isoforms CB1 and CB2. We report that CB1 and CB2 differentially regulate GABAergic synapse formation in vitro along proximal-distal axis and adult-born neuron maturation in vivo. The functional specialization between CB1 and CB2 isoforms arises from their differential protein half-life, in turn regulated by ubiquitin conjugation of the unique CB1 C-terminus. We report that CB1 and CB2 negatively regulate Cdc42; however, Cdc42 activation is dependent on CB interaction with gephyrin. During hippocampal adult neurogenesis CB1 regulates neuronal migration, while CB2 is essential for dendrite outgrowth. Finally, using mice lacking Gabra2 subunit, we show that CB1 function is downstream of GABAARs, and we can rescue adult neurogenesis deficit observed in Gabra2 KO. Overall, our results uncover previously unexpected role for CB isoforms downstream of α2-containing GABAARs during neuron maturation in a Cdc42 dependent mechanism. |
url |
http://europepmc.org/articles/PMC5673238?pdf=render |
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