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Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons

In the Drosophila brain, the neuropeptide PIGMENT DISPERSING FACTOR (PDF) is expressed in the small and large Lateral ventral neurons (LNvs) and regulates circadian locomotor behavior. Interestingly, PDF immunoreactivity at the dorsal terminals changes across the day as synaptic contacts do as a res...

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Autores principales: Depetris-Chauvin, Ana, Fernández-Gamba, Ágata, Gorostiza, E. Axel, Herrero, Anastasia, Castaño, Eduardo M., Ceriani, M. Fernanda
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4214601/
https://www.ncbi.nlm.nih.gov/pubmed/25356918
http://dx.doi.org/10.1371/journal.pgen.1004700
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author Depetris-Chauvin, Ana
Fernández-Gamba, Ágata
Gorostiza, E. Axel
Herrero, Anastasia
Castaño, Eduardo M.
Ceriani, M. Fernanda
author_facet Depetris-Chauvin, Ana
Fernández-Gamba, Ágata
Gorostiza, E. Axel
Herrero, Anastasia
Castaño, Eduardo M.
Ceriani, M. Fernanda
author_sort Depetris-Chauvin, Ana
collection PubMed
description In the Drosophila brain, the neuropeptide PIGMENT DISPERSING FACTOR (PDF) is expressed in the small and large Lateral ventral neurons (LNvs) and regulates circadian locomotor behavior. Interestingly, PDF immunoreactivity at the dorsal terminals changes across the day as synaptic contacts do as a result of a remarkable remodeling of sLNv projections. Despite the relevance of this phenomenon to circuit plasticity and behavior, the underlying mechanisms remain poorly understood. In this work we provide evidence that PDF along with matrix metalloproteinases (Mmp1 and 2) are key in the control of circadian structural remodeling. Adult-specific downregulation of PDF levels per se hampers circadian axonal remodeling, as it does altering Mmp1 or Mmp2 levels within PDF neurons post-developmentally. However, only Mmp1 affects PDF immunoreactivity at the dorsal terminals and exerts a clear effect on overt behavior. In vitro analysis demonstrated that PDF is hydrolyzed by Mmp1, thereby suggesting that Mmp1 could directly terminate its biological activity. These data demonstrate that Mmp1 modulates PDF processing, which leads to daily structural remodeling and circadian behavior.
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spelling pubmed-42146012014-11-05 Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons Depetris-Chauvin, Ana Fernández-Gamba, Ágata Gorostiza, E. Axel Herrero, Anastasia Castaño, Eduardo M. Ceriani, M. Fernanda PLoS Genet Research Article In the Drosophila brain, the neuropeptide PIGMENT DISPERSING FACTOR (PDF) is expressed in the small and large Lateral ventral neurons (LNvs) and regulates circadian locomotor behavior. Interestingly, PDF immunoreactivity at the dorsal terminals changes across the day as synaptic contacts do as a result of a remarkable remodeling of sLNv projections. Despite the relevance of this phenomenon to circuit plasticity and behavior, the underlying mechanisms remain poorly understood. In this work we provide evidence that PDF along with matrix metalloproteinases (Mmp1 and 2) are key in the control of circadian structural remodeling. Adult-specific downregulation of PDF levels per se hampers circadian axonal remodeling, as it does altering Mmp1 or Mmp2 levels within PDF neurons post-developmentally. However, only Mmp1 affects PDF immunoreactivity at the dorsal terminals and exerts a clear effect on overt behavior. In vitro analysis demonstrated that PDF is hydrolyzed by Mmp1, thereby suggesting that Mmp1 could directly terminate its biological activity. These data demonstrate that Mmp1 modulates PDF processing, which leads to daily structural remodeling and circadian behavior. Public Library of Science 2014-10-30 /pmc/articles/PMC4214601/ /pubmed/25356918 http://dx.doi.org/10.1371/journal.pgen.1004700 Text en © 2014 Depetris-Chauvin et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Depetris-Chauvin, Ana
Fernández-Gamba, Ágata
Gorostiza, E. Axel
Herrero, Anastasia
Castaño, Eduardo M.
Ceriani, M. Fernanda
Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons
title Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons
title_full Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons
title_fullStr Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons
title_full_unstemmed Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons
title_short Mmp1 Processing of the PDF Neuropeptide Regulates Circadian Structural Plasticity of Pacemaker Neurons
title_sort mmp1 processing of the pdf neuropeptide regulates circadian structural plasticity of pacemaker neurons
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4214601/
https://www.ncbi.nlm.nih.gov/pubmed/25356918
http://dx.doi.org/10.1371/journal.pgen.1004700
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