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Munc13 Is a Molecular Target of Bryostatin 1

[Image: see text] Bryostatin 1 is a natural macrolide shown to improve neuronal connections and enhance memory in mice. Its mechanism of action is largely attributed to the modulation of novel and conventional protein kinase Cs (PKCs) by binding to their regulatory C1 domains. Munc13-1 is a C1 domai...

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Autores principales: Blanco, Francisco A., Czikora, Agnes, Kedei, Noemi, You, Youngki, Mitchell, Gary A., Pany, Satyabrata, Ghosh, Anamitra, Blumberg, Peter M., Das, Joydip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6620733/
https://www.ncbi.nlm.nih.gov/pubmed/31243993
http://dx.doi.org/10.1021/acs.biochem.9b00427
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author Blanco, Francisco A.
Czikora, Agnes
Kedei, Noemi
You, Youngki
Mitchell, Gary A.
Pany, Satyabrata
Ghosh, Anamitra
Blumberg, Peter M.
Das, Joydip
author_facet Blanco, Francisco A.
Czikora, Agnes
Kedei, Noemi
You, Youngki
Mitchell, Gary A.
Pany, Satyabrata
Ghosh, Anamitra
Blumberg, Peter M.
Das, Joydip
author_sort Blanco, Francisco A.
collection PubMed
description [Image: see text] Bryostatin 1 is a natural macrolide shown to improve neuronal connections and enhance memory in mice. Its mechanism of action is largely attributed to the modulation of novel and conventional protein kinase Cs (PKCs) by binding to their regulatory C1 domains. Munc13-1 is a C1 domain-containing protein that shares common endogenous and exogenous activators with novel and conventional PKC subtypes. Given the essential role of Munc13-1 in the priming of synaptic vesicles and neuronal transmission overall, we explored the potential interaction between bryostatin 1 and Munc13-1. Our results indicate that in vitro bryostatin 1 binds to both the isolated C1 domain of Munc13-1 (K(i) = 8.07 ± 0.90 nM) and the full-length Munc13-1 protein (K(i) = 0.45 ± 0.04 nM). Furthermore, confocal microscopy and immunoblot analysis demonstrated that in intact HT22 cells bryostatin 1 mimics the actions of phorbol esters, a previously established class of Munc13-1 activators, and induces plasma membrane translocation of Munc13-1, a hallmark of its activation. Consistently, bryostatin 1 had no effect on the Munc13-1(H567K) construct that is insensitive to phorbol esters. Effects of bryostatin 1 on the other Munc13 family members, ubMunc13-2 and bMunc13-2, resembled those of Munc13-1 for translocation. Lastly, we observed an increased level of expression of Munc13-1 following a 24 h incubation with bryostatin 1 in both HT22 and primary mouse hippocampal cells. This study characterizes Munc13-1 as a molecular target of bryostatin 1. Considering the crucial role of Munc13-1 in neuronal function, these findings provide strong support for the potential role of Munc13s in the actions of bryostatin 1.
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spelling pubmed-66207332019-07-12 Munc13 Is a Molecular Target of Bryostatin 1 Blanco, Francisco A. Czikora, Agnes Kedei, Noemi You, Youngki Mitchell, Gary A. Pany, Satyabrata Ghosh, Anamitra Blumberg, Peter M. Das, Joydip Biochemistry [Image: see text] Bryostatin 1 is a natural macrolide shown to improve neuronal connections and enhance memory in mice. Its mechanism of action is largely attributed to the modulation of novel and conventional protein kinase Cs (PKCs) by binding to their regulatory C1 domains. Munc13-1 is a C1 domain-containing protein that shares common endogenous and exogenous activators with novel and conventional PKC subtypes. Given the essential role of Munc13-1 in the priming of synaptic vesicles and neuronal transmission overall, we explored the potential interaction between bryostatin 1 and Munc13-1. Our results indicate that in vitro bryostatin 1 binds to both the isolated C1 domain of Munc13-1 (K(i) = 8.07 ± 0.90 nM) and the full-length Munc13-1 protein (K(i) = 0.45 ± 0.04 nM). Furthermore, confocal microscopy and immunoblot analysis demonstrated that in intact HT22 cells bryostatin 1 mimics the actions of phorbol esters, a previously established class of Munc13-1 activators, and induces plasma membrane translocation of Munc13-1, a hallmark of its activation. Consistently, bryostatin 1 had no effect on the Munc13-1(H567K) construct that is insensitive to phorbol esters. Effects of bryostatin 1 on the other Munc13 family members, ubMunc13-2 and bMunc13-2, resembled those of Munc13-1 for translocation. Lastly, we observed an increased level of expression of Munc13-1 following a 24 h incubation with bryostatin 1 in both HT22 and primary mouse hippocampal cells. This study characterizes Munc13-1 as a molecular target of bryostatin 1. Considering the crucial role of Munc13-1 in neuronal function, these findings provide strong support for the potential role of Munc13s in the actions of bryostatin 1. American Chemical Society 2019-06-03 2019-07-09 /pmc/articles/PMC6620733/ /pubmed/31243993 http://dx.doi.org/10.1021/acs.biochem.9b00427 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Blanco, Francisco A.
Czikora, Agnes
Kedei, Noemi
You, Youngki
Mitchell, Gary A.
Pany, Satyabrata
Ghosh, Anamitra
Blumberg, Peter M.
Das, Joydip
Munc13 Is a Molecular Target of Bryostatin 1
title Munc13 Is a Molecular Target of Bryostatin 1
title_full Munc13 Is a Molecular Target of Bryostatin 1
title_fullStr Munc13 Is a Molecular Target of Bryostatin 1
title_full_unstemmed Munc13 Is a Molecular Target of Bryostatin 1
title_short Munc13 Is a Molecular Target of Bryostatin 1
title_sort munc13 is a molecular target of bryostatin 1
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6620733/
https://www.ncbi.nlm.nih.gov/pubmed/31243993
http://dx.doi.org/10.1021/acs.biochem.9b00427
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