Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development

Detalhes bibliográficos
Autor(a) principal: Landeira, Bruna Soares
Data de Publicação: 2016
Outros Autores: Santana, Themis Taynah da Silva, Araújo, Jéssica Alves de Medeiros, Tabet, Elie I., Tannous, Bakhos A., Schroeder, Timm, Costa, Marcos Romualdo
Tipo de documento: Artigo
Idioma: eng
Título da fonte: Repositório Institucional da UFRN
Texto Completo: https://repositorio.ufrn.br/jspui/handle/123456789/21645
Resumo: Neuronal survival and morphological maturation depends on the action of the transcription factor calcium responsive element binding protein (CREB), which regulates expression of several target genes in an activity-dependent manner. However, it remains largely unknown whether CREB-mediated transcription could play a role at early stages of neuronal differentiation, prior to the establishment of functional synaptic contacts. Here, we show that CREB is phosphorylated at very early stages of neuronal differentiation in vivo and in vitro, even in the absence of depolarizing agents. Using genetic tools, we also show that inhibition of CREB-signaling affects neuronal growth and survival in vitro without affecting cell proliferation and neurogenesis. Expression of A-CREB or M-CREB, 2 dominant-negative inhibitors of CREB, decreases cell survival and the complexity of neuronal arborization. Similar changes are observed in neurons treated with protein kinase A (PKA) and Ca2+/calmodulin-dependent protein kinase II (CaMKII) inhibitors, which also show decreased levels of pCREBSer133. Notably, expression of CREB-FY, a Tyr134Phe CREB mutant with a lower Km for phosphorylation, partly rescues the effects of PKA and CaMKII inhibition. Our data indicate that CREB-mediated signaling play important roles at early stages of cortical neuron differentiation, prior to the establishment of fully functional synaptic contacts.
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spelling Landeira, Bruna SoaresSantana, Themis Taynah da SilvaAraújo, Jéssica Alves de MedeirosTabet, Elie I.Tannous, Bakhos A.Schroeder, TimmCosta, Marcos Romualdo2017-01-16T13:04:57Z2017-01-16T13:04:57Z2016-12https://repositorio.ufrn.br/jspui/handle/123456789/21645engCortexCREB signalingImmature neuronsDendritic differentiationNeuronal survivalActivity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Developmentinfo:eu-repo/semantics/publishedVersioninfo:eu-repo/semantics/articleNeuronal survival and morphological maturation depends on the action of the transcription factor calcium responsive element binding protein (CREB), which regulates expression of several target genes in an activity-dependent manner. However, it remains largely unknown whether CREB-mediated transcription could play a role at early stages of neuronal differentiation, prior to the establishment of functional synaptic contacts. Here, we show that CREB is phosphorylated at very early stages of neuronal differentiation in vivo and in vitro, even in the absence of depolarizing agents. Using genetic tools, we also show that inhibition of CREB-signaling affects neuronal growth and survival in vitro without affecting cell proliferation and neurogenesis. Expression of A-CREB or M-CREB, 2 dominant-negative inhibitors of CREB, decreases cell survival and the complexity of neuronal arborization. Similar changes are observed in neurons treated with protein kinase A (PKA) and Ca2+/calmodulin-dependent protein kinase II (CaMKII) inhibitors, which also show decreased levels of pCREBSer133. Notably, expression of CREB-FY, a Tyr134Phe CREB mutant with a lower Km for phosphorylation, partly rescues the effects of PKA and CaMKII inhibition. 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dc.title.pt_BR.fl_str_mv Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
title Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
spellingShingle Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
Landeira, Bruna Soares
Cortex
CREB signaling
Immature neurons
Dendritic differentiation
Neuronal survival
title_short Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
title_full Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
title_fullStr Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
title_full_unstemmed Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
title_sort Activity-Independent Effects of CREB on Neuronal Survival and Differentiation during Mouse Cerebral Cortex Development
author Landeira, Bruna Soares
author_facet Landeira, Bruna Soares
Santana, Themis Taynah da Silva
Araújo, Jéssica Alves de Medeiros
Tabet, Elie I.
Tannous, Bakhos A.
Schroeder, Timm
Costa, Marcos Romualdo
author_role author
author2 Santana, Themis Taynah da Silva
Araújo, Jéssica Alves de Medeiros
Tabet, Elie I.
Tannous, Bakhos A.
Schroeder, Timm
Costa, Marcos Romualdo
author2_role author
author
author
author
author
author
dc.contributor.author.fl_str_mv Landeira, Bruna Soares
Santana, Themis Taynah da Silva
Araújo, Jéssica Alves de Medeiros
Tabet, Elie I.
Tannous, Bakhos A.
Schroeder, Timm
Costa, Marcos Romualdo
dc.subject.por.fl_str_mv Cortex
CREB signaling
Immature neurons
Dendritic differentiation
Neuronal survival
topic Cortex
CREB signaling
Immature neurons
Dendritic differentiation
Neuronal survival
description Neuronal survival and morphological maturation depends on the action of the transcription factor calcium responsive element binding protein (CREB), which regulates expression of several target genes in an activity-dependent manner. However, it remains largely unknown whether CREB-mediated transcription could play a role at early stages of neuronal differentiation, prior to the establishment of functional synaptic contacts. Here, we show that CREB is phosphorylated at very early stages of neuronal differentiation in vivo and in vitro, even in the absence of depolarizing agents. Using genetic tools, we also show that inhibition of CREB-signaling affects neuronal growth and survival in vitro without affecting cell proliferation and neurogenesis. Expression of A-CREB or M-CREB, 2 dominant-negative inhibitors of CREB, decreases cell survival and the complexity of neuronal arborization. Similar changes are observed in neurons treated with protein kinase A (PKA) and Ca2+/calmodulin-dependent protein kinase II (CaMKII) inhibitors, which also show decreased levels of pCREBSer133. Notably, expression of CREB-FY, a Tyr134Phe CREB mutant with a lower Km for phosphorylation, partly rescues the effects of PKA and CaMKII inhibition. Our data indicate that CREB-mediated signaling play important roles at early stages of cortical neuron differentiation, prior to the establishment of fully functional synaptic contacts.
publishDate 2016
dc.date.issued.fl_str_mv 2016-12
dc.date.accessioned.fl_str_mv 2017-01-16T13:04:57Z
dc.date.available.fl_str_mv 2017-01-16T13:04:57Z
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