Cargando…

Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death

Resistance to inhibitors of cholinesterase 8 (RIC8) is a guanine nucleotide exchange factor required for the intracellular regulation of G protein signalling. RIC8 activates different Gα subunits via non-canonical pathway, thereby amplifying and prolonging the G protein mediated signal. In order to...

Descripción completa

Detalles Bibliográficos
Autores principales: Ruisu, Katrin, Kask, Keiu, Meier, Riho, Saare, Merly, Raid, Raivo, Veraksitš, Alar, Karis, Alar, Tõnissoo, Tambet, Pooga, Margus
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3745415/
https://www.ncbi.nlm.nih.gov/pubmed/23977396
http://dx.doi.org/10.1371/journal.pone.0074031
_version_ 1782280691057164288
author Ruisu, Katrin
Kask, Keiu
Meier, Riho
Saare, Merly
Raid, Raivo
Veraksitš, Alar
Karis, Alar
Tõnissoo, Tambet
Pooga, Margus
author_facet Ruisu, Katrin
Kask, Keiu
Meier, Riho
Saare, Merly
Raid, Raivo
Veraksitš, Alar
Karis, Alar
Tõnissoo, Tambet
Pooga, Margus
author_sort Ruisu, Katrin
collection PubMed
description Resistance to inhibitors of cholinesterase 8 (RIC8) is a guanine nucleotide exchange factor required for the intracellular regulation of G protein signalling. RIC8 activates different Gα subunits via non-canonical pathway, thereby amplifying and prolonging the G protein mediated signal. In order to circumvent the embryonic lethality associated with the absence of RIC8A and to study its role in the nervous system, we constructed Ric8a conditional knockout mice using Cre/loxP technology. Introduction of a synapsin I promoter driven Cre transgenic mouse strain (SynCre) into the floxed Ric8a (Ric8a (F/F)) background ablated RIC8A function in most differentiated neuron populations. Mutant SynCre (+/-) Ric8 (lacZ/F) mice were born at expected Mendelian ratio, but they died in early postnatal age (P4-P6). The mutants exhibited major developmental defects, like growth retardation and muscular weakness, impaired coordination and balance, muscular spasms and abnormal heart beat. Histological analysis revealed that the deficiency of RIC8A in neurons caused skeletal muscle atrophy and heart muscle hypoplasia, in addition, the sinoatrial node was misplaced and its size reduced. However, we did not observe gross morphological changes in brains of SynCre (+/-) Ric8a (lacZ/F) mutants. Our results demonstrate that in mice the activity of RIC8A in neurons is essential for survival and its deficiency causes a severe neuromuscular phenotype.
format Online
Article
Text
id pubmed-3745415
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37454152013-08-23 Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death Ruisu, Katrin Kask, Keiu Meier, Riho Saare, Merly Raid, Raivo Veraksitš, Alar Karis, Alar Tõnissoo, Tambet Pooga, Margus PLoS One Research Article Resistance to inhibitors of cholinesterase 8 (RIC8) is a guanine nucleotide exchange factor required for the intracellular regulation of G protein signalling. RIC8 activates different Gα subunits via non-canonical pathway, thereby amplifying and prolonging the G protein mediated signal. In order to circumvent the embryonic lethality associated with the absence of RIC8A and to study its role in the nervous system, we constructed Ric8a conditional knockout mice using Cre/loxP technology. Introduction of a synapsin I promoter driven Cre transgenic mouse strain (SynCre) into the floxed Ric8a (Ric8a (F/F)) background ablated RIC8A function in most differentiated neuron populations. Mutant SynCre (+/-) Ric8 (lacZ/F) mice were born at expected Mendelian ratio, but they died in early postnatal age (P4-P6). The mutants exhibited major developmental defects, like growth retardation and muscular weakness, impaired coordination and balance, muscular spasms and abnormal heart beat. Histological analysis revealed that the deficiency of RIC8A in neurons caused skeletal muscle atrophy and heart muscle hypoplasia, in addition, the sinoatrial node was misplaced and its size reduced. However, we did not observe gross morphological changes in brains of SynCre (+/-) Ric8a (lacZ/F) mutants. Our results demonstrate that in mice the activity of RIC8A in neurons is essential for survival and its deficiency causes a severe neuromuscular phenotype. Public Library of Science 2013-08-16 /pmc/articles/PMC3745415/ /pubmed/23977396 http://dx.doi.org/10.1371/journal.pone.0074031 Text en © 2013 Ruisu 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
Ruisu, Katrin
Kask, Keiu
Meier, Riho
Saare, Merly
Raid, Raivo
Veraksitš, Alar
Karis, Alar
Tõnissoo, Tambet
Pooga, Margus
Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death
title Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death
title_full Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death
title_fullStr Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death
title_full_unstemmed Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death
title_short Ablation of RIC8A Function in Mouse Neurons Leads to a Severe Neuromuscular Phenotype and Postnatal Death
title_sort ablation of ric8a function in mouse neurons leads to a severe neuromuscular phenotype and postnatal death
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3745415/
https://www.ncbi.nlm.nih.gov/pubmed/23977396
http://dx.doi.org/10.1371/journal.pone.0074031
work_keys_str_mv AT ruisukatrin ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT kaskkeiu ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT meierriho ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT saaremerly ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT raidraivo ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT veraksitsalar ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT karisalar ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT tonissootambet ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath
AT poogamargus ablationofric8afunctioninmouseneuronsleadstoasevereneuromuscularphenotypeandpostnataldeath