Cargando…

PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons

Platelet-activating factor acetylhydrolase 1B (PAF-AH) inactivates the potent phospholipid platelet-activating factor (PAF) and is composed of two catalytic subunits (α1 and α2) and a dimeric regulatory subunit, LIS1. The function of the catalytic subunits in brain development remains unknown. Here...

Descripción completa

Detalles Bibliográficos
Autores principales: Livnat, Idit, Finkelshtein, Danit, Ghosh, Indraneel, Arai, Hiroyuki, Reiner, Orly
Formato: Texto
Lenguaje:English
Publicado: Frontiers Research Foundation 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2901149/
https://www.ncbi.nlm.nih.gov/pubmed/20725507
http://dx.doi.org/10.3389/fncel.2010.00019
_version_ 1782183653021843456
author Livnat, Idit
Finkelshtein, Danit
Ghosh, Indraneel
Arai, Hiroyuki
Reiner, Orly
author_facet Livnat, Idit
Finkelshtein, Danit
Ghosh, Indraneel
Arai, Hiroyuki
Reiner, Orly
author_sort Livnat, Idit
collection PubMed
description Platelet-activating factor acetylhydrolase 1B (PAF-AH) inactivates the potent phospholipid platelet-activating factor (PAF) and is composed of two catalytic subunits (α1 and α2) and a dimeric regulatory subunit, LIS1. The function of the catalytic subunits in brain development remains unknown. Here we examined their effects on proliferation in the ganglionic eminences and tangential migration. In α1 and α2 catalytic subunits knockout mice we noticed an increase in the size of the ganglionic eminences resulting from increased proliferation of GABAergic neurons. Our results indicate that the catalytic subunits act as negative regulators of the Wnt signaling pathway. Overexpression of each of the PAF-AH catalytic subunits reduced the amount of nuclear beta-catenin and provoked a shift of this protein from the nucleus to the cytoplasm. In the double mutant mice, Wnt signaling increased in the ganglionic eminences and in the dorsal part of the cerebral cortex. In situ hybridization revealed increased and expanded expression of a downstream target of the Wnt pathway (Cyclin D1), and of upstream Wnt components (Tcf4, Tcf3 and Wnt7B). Furthermore, the interneurons in the cerebral cortex were more numerous and in a more advanced position. Transplantation assays revealed a non-cell autonomous component to this phenotype, which may be explained in part by increased and expanded expression of Sdf1 and Netrin-1. Our findings strongly suggest that PAF-AH catalytic subunits modulate the Wnt pathway in restricted areas of the developing cerebral cortex. We hypothesize that modulation of the Wnt pathway is the evolutionary conserved activity of the PAF-AH catalytic subunits.
format Text
id pubmed-2901149
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Frontiers Research Foundation
record_format MEDLINE/PubMed
spelling pubmed-29011492010-08-19 PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons Livnat, Idit Finkelshtein, Danit Ghosh, Indraneel Arai, Hiroyuki Reiner, Orly Front Cell Neurosci Neuroscience Platelet-activating factor acetylhydrolase 1B (PAF-AH) inactivates the potent phospholipid platelet-activating factor (PAF) and is composed of two catalytic subunits (α1 and α2) and a dimeric regulatory subunit, LIS1. The function of the catalytic subunits in brain development remains unknown. Here we examined their effects on proliferation in the ganglionic eminences and tangential migration. In α1 and α2 catalytic subunits knockout mice we noticed an increase in the size of the ganglionic eminences resulting from increased proliferation of GABAergic neurons. Our results indicate that the catalytic subunits act as negative regulators of the Wnt signaling pathway. Overexpression of each of the PAF-AH catalytic subunits reduced the amount of nuclear beta-catenin and provoked a shift of this protein from the nucleus to the cytoplasm. In the double mutant mice, Wnt signaling increased in the ganglionic eminences and in the dorsal part of the cerebral cortex. In situ hybridization revealed increased and expanded expression of a downstream target of the Wnt pathway (Cyclin D1), and of upstream Wnt components (Tcf4, Tcf3 and Wnt7B). Furthermore, the interneurons in the cerebral cortex were more numerous and in a more advanced position. Transplantation assays revealed a non-cell autonomous component to this phenotype, which may be explained in part by increased and expanded expression of Sdf1 and Netrin-1. Our findings strongly suggest that PAF-AH catalytic subunits modulate the Wnt pathway in restricted areas of the developing cerebral cortex. We hypothesize that modulation of the Wnt pathway is the evolutionary conserved activity of the PAF-AH catalytic subunits. Frontiers Research Foundation 2010-05-28 /pmc/articles/PMC2901149/ /pubmed/20725507 http://dx.doi.org/10.3389/fncel.2010.00019 Text en Copyright © 2010 Livnat, Finkelshtein, Ghosh, Arai and Reiner. http://www.frontiersin.org/licenseagreement This is an open-access article subject to an exclusive license agreement between the authors and the Frontiers Research Foundation, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are credited.
spellingShingle Neuroscience
Livnat, Idit
Finkelshtein, Danit
Ghosh, Indraneel
Arai, Hiroyuki
Reiner, Orly
PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons
title PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons
title_full PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons
title_fullStr PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons
title_full_unstemmed PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons
title_short PAF-AH Catalytic Subunits Modulate the Wnt Pathway in Developing GABAergic Neurons
title_sort paf-ah catalytic subunits modulate the wnt pathway in developing gabaergic neurons
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2901149/
https://www.ncbi.nlm.nih.gov/pubmed/20725507
http://dx.doi.org/10.3389/fncel.2010.00019
work_keys_str_mv AT livnatidit pafahcatalyticsubunitsmodulatethewntpathwayindevelopinggabaergicneurons
AT finkelshteindanit pafahcatalyticsubunitsmodulatethewntpathwayindevelopinggabaergicneurons
AT ghoshindraneel pafahcatalyticsubunitsmodulatethewntpathwayindevelopinggabaergicneurons
AT araihiroyuki pafahcatalyticsubunitsmodulatethewntpathwayindevelopinggabaergicneurons
AT reinerorly pafahcatalyticsubunitsmodulatethewntpathwayindevelopinggabaergicneurons