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Clustered Protocadherins Are Required for Building Functional Neural Circuits

Neuronal identity is generated by the cell-surface expression of clustered protocadherin (Pcdh) isoforms. In mice, 58 isoforms from three gene clusters, Pcdhα, Pcdhβ, and Pcdhγ, are differentially expressed in neurons. Since cis-heteromeric Pcdh oligomers on the cell surface interact homophilically...

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Autores principales: Hasegawa, Sonoko, Kobayashi, Hiroaki, Kumagai, Makiko, Nishimaru, Hiroshi, Tarusawa, Etsuko, Kanda, Hiro, Sanbo, Makoto, Yoshimura, Yumiko, Hirabayashi, Masumi, Hirabayashi, Takahiro, Yagi, Takeshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5401904/
https://www.ncbi.nlm.nih.gov/pubmed/28484370
http://dx.doi.org/10.3389/fnmol.2017.00114
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author Hasegawa, Sonoko
Kobayashi, Hiroaki
Kumagai, Makiko
Nishimaru, Hiroshi
Tarusawa, Etsuko
Kanda, Hiro
Sanbo, Makoto
Yoshimura, Yumiko
Hirabayashi, Masumi
Hirabayashi, Takahiro
Yagi, Takeshi
author_facet Hasegawa, Sonoko
Kobayashi, Hiroaki
Kumagai, Makiko
Nishimaru, Hiroshi
Tarusawa, Etsuko
Kanda, Hiro
Sanbo, Makoto
Yoshimura, Yumiko
Hirabayashi, Masumi
Hirabayashi, Takahiro
Yagi, Takeshi
author_sort Hasegawa, Sonoko
collection PubMed
description Neuronal identity is generated by the cell-surface expression of clustered protocadherin (Pcdh) isoforms. In mice, 58 isoforms from three gene clusters, Pcdhα, Pcdhβ, and Pcdhγ, are differentially expressed in neurons. Since cis-heteromeric Pcdh oligomers on the cell surface interact homophilically with that in other neurons in trans, it has been thought that the Pcdh isoform repertoire determines the binding specificity of synapses. We previously described the cooperative functions of isoforms from all three Pcdh gene clusters in neuronal survival and synapse formation in the spinal cord. However, the neuronal loss and the following neonatal lethality prevented an analysis of the postnatal development and characteristics of the clustered-Pcdh-null (Δαβγ) neural circuits. Here, we used two methods, one to generate the chimeric mice that have transplanted Δαβγ neurons into mouse embryos, and the other to generate double mutant mice harboring null alleles of both the Pcdh gene and the proapoptotic gene Bax to prevent neuronal loss. First, our results showed that the surviving chimeric mice that had a high contribution of Δαβγ cells exhibited paralysis and died in the postnatal period. An analysis of neuronal survival in postnatally developing brain regions of chimeric mice clarified that many Δαβγ neurons in the forebrain were spared from apoptosis, unlike those in the reticular formation of the brainstem. Second, in Δαβγ/Bax null double mutants, the central pattern generator (CPG) for locomotion failed to create a left-right alternating pattern even in the absence of neurodegeneraton. Third, calcium imaging of cultured hippocampal neurons showed that the network activity of Δαβγ neurons tended to be more synchronized and lost the variability in the number of simultaneously active neurons observed in the control network. Lastly, a comparative analysis for trans-homophilic interactions of the exogenously introduced single Pcdh-γA3 isoforms between the control and the Δαβγ neurons suggested that the isoform-specific trans-homophilic interactions require a complete match of the expressed isoform repertoire at the contacting sites between interactive neurons. These results suggested that combinations of clustered Pcdh isoforms are required for building appropriate neural circuits.
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spelling pubmed-54019042017-05-08 Clustered Protocadherins Are Required for Building Functional Neural Circuits Hasegawa, Sonoko Kobayashi, Hiroaki Kumagai, Makiko Nishimaru, Hiroshi Tarusawa, Etsuko Kanda, Hiro Sanbo, Makoto Yoshimura, Yumiko Hirabayashi, Masumi Hirabayashi, Takahiro Yagi, Takeshi Front Mol Neurosci Neuroscience Neuronal identity is generated by the cell-surface expression of clustered protocadherin (Pcdh) isoforms. In mice, 58 isoforms from three gene clusters, Pcdhα, Pcdhβ, and Pcdhγ, are differentially expressed in neurons. Since cis-heteromeric Pcdh oligomers on the cell surface interact homophilically with that in other neurons in trans, it has been thought that the Pcdh isoform repertoire determines the binding specificity of synapses. We previously described the cooperative functions of isoforms from all three Pcdh gene clusters in neuronal survival and synapse formation in the spinal cord. However, the neuronal loss and the following neonatal lethality prevented an analysis of the postnatal development and characteristics of the clustered-Pcdh-null (Δαβγ) neural circuits. Here, we used two methods, one to generate the chimeric mice that have transplanted Δαβγ neurons into mouse embryos, and the other to generate double mutant mice harboring null alleles of both the Pcdh gene and the proapoptotic gene Bax to prevent neuronal loss. First, our results showed that the surviving chimeric mice that had a high contribution of Δαβγ cells exhibited paralysis and died in the postnatal period. An analysis of neuronal survival in postnatally developing brain regions of chimeric mice clarified that many Δαβγ neurons in the forebrain were spared from apoptosis, unlike those in the reticular formation of the brainstem. Second, in Δαβγ/Bax null double mutants, the central pattern generator (CPG) for locomotion failed to create a left-right alternating pattern even in the absence of neurodegeneraton. Third, calcium imaging of cultured hippocampal neurons showed that the network activity of Δαβγ neurons tended to be more synchronized and lost the variability in the number of simultaneously active neurons observed in the control network. Lastly, a comparative analysis for trans-homophilic interactions of the exogenously introduced single Pcdh-γA3 isoforms between the control and the Δαβγ neurons suggested that the isoform-specific trans-homophilic interactions require a complete match of the expressed isoform repertoire at the contacting sites between interactive neurons. These results suggested that combinations of clustered Pcdh isoforms are required for building appropriate neural circuits. Frontiers Media S.A. 2017-04-24 /pmc/articles/PMC5401904/ /pubmed/28484370 http://dx.doi.org/10.3389/fnmol.2017.00114 Text en Copyright © 2017 Hasegawa, Kobayashi, Kumagai, Nishimaru, Tarusawa, Kanda, Sanbo, Yoshimura, Hirabayashi, Hirabayashi and Yagi. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Hasegawa, Sonoko
Kobayashi, Hiroaki
Kumagai, Makiko
Nishimaru, Hiroshi
Tarusawa, Etsuko
Kanda, Hiro
Sanbo, Makoto
Yoshimura, Yumiko
Hirabayashi, Masumi
Hirabayashi, Takahiro
Yagi, Takeshi
Clustered Protocadherins Are Required for Building Functional Neural Circuits
title Clustered Protocadherins Are Required for Building Functional Neural Circuits
title_full Clustered Protocadherins Are Required for Building Functional Neural Circuits
title_fullStr Clustered Protocadherins Are Required for Building Functional Neural Circuits
title_full_unstemmed Clustered Protocadherins Are Required for Building Functional Neural Circuits
title_short Clustered Protocadherins Are Required for Building Functional Neural Circuits
title_sort clustered protocadherins are required for building functional neural circuits
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5401904/
https://www.ncbi.nlm.nih.gov/pubmed/28484370
http://dx.doi.org/10.3389/fnmol.2017.00114
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