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Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity

Bone loss is a serious problem in spaceflight; however, the initial action of microgravity has not been identified. To examine this action, we performed live-imaging of animals during a space mission followed by transcriptome analysis using medaka transgenic lines expressing osteoblast and osteoclas...

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Autores principales: Chatani, Masahiro, Morimoto, Hiroya, Takeyama, Kazuhiro, Mantoku, Akiko, Tanigawa, Naoki, Kubota, Koji, Suzuki, Hiromi, Uchida, Satoko, Tanigaki, Fumiaki, Shirakawa, Masaki, Gusev, Oleg, Sychev, Vladimir, Takano, Yoshiro, Itoh, Takehiko, Kudo, Akira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5177882/
https://www.ncbi.nlm.nih.gov/pubmed/28004797
http://dx.doi.org/10.1038/srep39545
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author Chatani, Masahiro
Morimoto, Hiroya
Takeyama, Kazuhiro
Mantoku, Akiko
Tanigawa, Naoki
Kubota, Koji
Suzuki, Hiromi
Uchida, Satoko
Tanigaki, Fumiaki
Shirakawa, Masaki
Gusev, Oleg
Sychev, Vladimir
Takano, Yoshiro
Itoh, Takehiko
Kudo, Akira
author_facet Chatani, Masahiro
Morimoto, Hiroya
Takeyama, Kazuhiro
Mantoku, Akiko
Tanigawa, Naoki
Kubota, Koji
Suzuki, Hiromi
Uchida, Satoko
Tanigaki, Fumiaki
Shirakawa, Masaki
Gusev, Oleg
Sychev, Vladimir
Takano, Yoshiro
Itoh, Takehiko
Kudo, Akira
author_sort Chatani, Masahiro
collection PubMed
description Bone loss is a serious problem in spaceflight; however, the initial action of microgravity has not been identified. To examine this action, we performed live-imaging of animals during a space mission followed by transcriptome analysis using medaka transgenic lines expressing osteoblast and osteoclast-specific promoter-driven GFP and DsRed. In live-imaging for osteoblasts, the intensity of osterix- or osteocalcin-DsRed fluorescence in pharyngeal bones was significantly enhanced 1 day after launch; and this enhancement continued for 8 or 5 days. In osteoclasts, the signals of TRAP-GFP and MMP9-DsRed were highly increased at days 4 and 6 after launch in flight. HiSeq from pharyngeal bones of juvenile fish at day 2 after launch showed up-regulation of 2 osteoblast- and 3 osteoclast- related genes. Gene ontology analysis for the whole-body showed that transcription of genes in the category “nucleus” was significantly enhanced; particularly, transcription-regulators were more up-regulated at day 2 than at day 6. Lastly, we identified 5 genes, c-fos, jun-B-like, pai-1, ddit4 and tsc22d3, which were up-regulated commonly in the whole-body at days 2 and 6, and in the pharyngeal bone at day 2. Our results suggested that exposure to microgravity immediately induced dynamic alteration of gene expression levels in osteoblasts and osteoclasts.
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spelling pubmed-51778822016-12-29 Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity Chatani, Masahiro Morimoto, Hiroya Takeyama, Kazuhiro Mantoku, Akiko Tanigawa, Naoki Kubota, Koji Suzuki, Hiromi Uchida, Satoko Tanigaki, Fumiaki Shirakawa, Masaki Gusev, Oleg Sychev, Vladimir Takano, Yoshiro Itoh, Takehiko Kudo, Akira Sci Rep Article Bone loss is a serious problem in spaceflight; however, the initial action of microgravity has not been identified. To examine this action, we performed live-imaging of animals during a space mission followed by transcriptome analysis using medaka transgenic lines expressing osteoblast and osteoclast-specific promoter-driven GFP and DsRed. In live-imaging for osteoblasts, the intensity of osterix- or osteocalcin-DsRed fluorescence in pharyngeal bones was significantly enhanced 1 day after launch; and this enhancement continued for 8 or 5 days. In osteoclasts, the signals of TRAP-GFP and MMP9-DsRed were highly increased at days 4 and 6 after launch in flight. HiSeq from pharyngeal bones of juvenile fish at day 2 after launch showed up-regulation of 2 osteoblast- and 3 osteoclast- related genes. Gene ontology analysis for the whole-body showed that transcription of genes in the category “nucleus” was significantly enhanced; particularly, transcription-regulators were more up-regulated at day 2 than at day 6. Lastly, we identified 5 genes, c-fos, jun-B-like, pai-1, ddit4 and tsc22d3, which were up-regulated commonly in the whole-body at days 2 and 6, and in the pharyngeal bone at day 2. Our results suggested that exposure to microgravity immediately induced dynamic alteration of gene expression levels in osteoblasts and osteoclasts. Nature Publishing Group 2016-12-22 /pmc/articles/PMC5177882/ /pubmed/28004797 http://dx.doi.org/10.1038/srep39545 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Chatani, Masahiro
Morimoto, Hiroya
Takeyama, Kazuhiro
Mantoku, Akiko
Tanigawa, Naoki
Kubota, Koji
Suzuki, Hiromi
Uchida, Satoko
Tanigaki, Fumiaki
Shirakawa, Masaki
Gusev, Oleg
Sychev, Vladimir
Takano, Yoshiro
Itoh, Takehiko
Kudo, Akira
Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
title Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
title_full Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
title_fullStr Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
title_full_unstemmed Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
title_short Acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
title_sort acute transcriptional up-regulation specific to osteoblasts/osteoclasts in medaka fish immediately after exposure to microgravity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5177882/
https://www.ncbi.nlm.nih.gov/pubmed/28004797
http://dx.doi.org/10.1038/srep39545
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