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Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice

BACKGROUND: Previous work has established that HGF/c-Met signaling plays a pivotal role in regulating the onset of S phase following partial hepatectomy (PH). In this study, we used Met(fl/fl);Alb-Cre(+/−) conditional knockout mice to determine the effects of c-Met dysfunction in hepatocytes on kine...

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Autores principales: Factor, Valentina M., Seo, Daekwan, Ishikawa, Tsuyoshi, Kaposi-Novak, Pal, Marquardt, Jens U., Andersen, Jesper B., Conner, Elizabeth A., Thorgeirsson, Snorri S.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2940888/
https://www.ncbi.nlm.nih.gov/pubmed/20862286
http://dx.doi.org/10.1371/journal.pone.0012739
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author Factor, Valentina M.
Seo, Daekwan
Ishikawa, Tsuyoshi
Kaposi-Novak, Pal
Marquardt, Jens U.
Andersen, Jesper B.
Conner, Elizabeth A.
Thorgeirsson, Snorri S.
author_facet Factor, Valentina M.
Seo, Daekwan
Ishikawa, Tsuyoshi
Kaposi-Novak, Pal
Marquardt, Jens U.
Andersen, Jesper B.
Conner, Elizabeth A.
Thorgeirsson, Snorri S.
author_sort Factor, Valentina M.
collection PubMed
description BACKGROUND: Previous work has established that HGF/c-Met signaling plays a pivotal role in regulating the onset of S phase following partial hepatectomy (PH). In this study, we used Met(fl/fl);Alb-Cre(+/−) conditional knockout mice to determine the effects of c-Met dysfunction in hepatocytes on kinetics of liver regeneration. METHODOLOGY/PRINCIPAL FINDING: The priming events appeared to be intact in Met(fl/fl);Alb-Cre(+/−) livers. Up-regulation of stress response (MAFK, IKBZ, SOCS3) and early growth response (c-Myc, c-Jun, c-Fos, DUSP1 and 6) genes as assessed by RT-qPCR and/or microarray profiling was unchanged. This was consistent with an early induction of MAPK/Erk and STAT3. However, after a successful completion of the first round of DNA replication, c-Met deficient hepatocytes were blocked in early/mid G2 phase as shown by staining with phosphorylated form of histone H3. Furthermore, loss of c-Met in hepatocytes diminished the subsequent G1/S progression and delayed liver recovery after partial hepatectomy. Upstream signaling pathways involved in the blockage of G2/M transition included lack of persistent Erk1/2 activation and inability to up-regulate the levels of Cdk1, Plk1, Aurora A and B, and Mad2 along with a defective histone 3 phosphorylation and lack of chromatin condensation. Continuous supplementation with EGF in vitro increased proliferation of Met(fl/fl);Alb-Cre(+/−) primary hepatocytes and partially restored expression levels of mitotic cell cycle regulators albeit to a lesser degree as compared to control cultures. CONCLUSION/SIGNIFICANCE: In conclusion, our results assign a novel non-redundant function for HGF/c-Met signaling in regulation of G2/M gene expression program via maintaining a persistent Erk1/2 activation throughout liver regeneration.
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spelling pubmed-29408882010-09-22 Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice Factor, Valentina M. Seo, Daekwan Ishikawa, Tsuyoshi Kaposi-Novak, Pal Marquardt, Jens U. Andersen, Jesper B. Conner, Elizabeth A. Thorgeirsson, Snorri S. PLoS One Research Article BACKGROUND: Previous work has established that HGF/c-Met signaling plays a pivotal role in regulating the onset of S phase following partial hepatectomy (PH). In this study, we used Met(fl/fl);Alb-Cre(+/−) conditional knockout mice to determine the effects of c-Met dysfunction in hepatocytes on kinetics of liver regeneration. METHODOLOGY/PRINCIPAL FINDING: The priming events appeared to be intact in Met(fl/fl);Alb-Cre(+/−) livers. Up-regulation of stress response (MAFK, IKBZ, SOCS3) and early growth response (c-Myc, c-Jun, c-Fos, DUSP1 and 6) genes as assessed by RT-qPCR and/or microarray profiling was unchanged. This was consistent with an early induction of MAPK/Erk and STAT3. However, after a successful completion of the first round of DNA replication, c-Met deficient hepatocytes were blocked in early/mid G2 phase as shown by staining with phosphorylated form of histone H3. Furthermore, loss of c-Met in hepatocytes diminished the subsequent G1/S progression and delayed liver recovery after partial hepatectomy. Upstream signaling pathways involved in the blockage of G2/M transition included lack of persistent Erk1/2 activation and inability to up-regulate the levels of Cdk1, Plk1, Aurora A and B, and Mad2 along with a defective histone 3 phosphorylation and lack of chromatin condensation. Continuous supplementation with EGF in vitro increased proliferation of Met(fl/fl);Alb-Cre(+/−) primary hepatocytes and partially restored expression levels of mitotic cell cycle regulators albeit to a lesser degree as compared to control cultures. CONCLUSION/SIGNIFICANCE: In conclusion, our results assign a novel non-redundant function for HGF/c-Met signaling in regulation of G2/M gene expression program via maintaining a persistent Erk1/2 activation throughout liver regeneration. Public Library of Science 2010-09-16 /pmc/articles/PMC2940888/ /pubmed/20862286 http://dx.doi.org/10.1371/journal.pone.0012739 Text en This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. https://creativecommons.org/publicdomain/zero/1.0/ This is an open-access article distributed under the terms of the Creative Commons Public Domain declaration, which stipulates that, once placed in the public domain, this work may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose.
spellingShingle Research Article
Factor, Valentina M.
Seo, Daekwan
Ishikawa, Tsuyoshi
Kaposi-Novak, Pal
Marquardt, Jens U.
Andersen, Jesper B.
Conner, Elizabeth A.
Thorgeirsson, Snorri S.
Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice
title Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice
title_full Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice
title_fullStr Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice
title_full_unstemmed Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice
title_short Loss of c-Met Disrupts Gene Expression Program Required for G2/M Progression during Liver Regeneration in Mice
title_sort loss of c-met disrupts gene expression program required for g2/m progression during liver regeneration in mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2940888/
https://www.ncbi.nlm.nih.gov/pubmed/20862286
http://dx.doi.org/10.1371/journal.pone.0012739
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