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T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes

Liver regeneration is a tightly controlled process mainly achieved by proliferation of usually quiescent hepatocytes. The specific molecular mechanisms ensuring cell division only in response to proliferative signals such as hepatocyte growth factor (HGF) are not fully understood. Here, we combined...

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Autores principales: Mueller, Stephanie, Huard, Jérémy, Waldow, Katharina, Huang, Xiaoyun, D'Alessandro, Lorenza A, Bohl, Sebastian, Börner, Kathleen, Grimm, Dirk, Klamt, Steffen, Klingmüller, Ursula, Schilling, Marcel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4380929/
https://www.ncbi.nlm.nih.gov/pubmed/26148348
http://dx.doi.org/10.15252/msb.20156032
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author Mueller, Stephanie
Huard, Jérémy
Waldow, Katharina
Huang, Xiaoyun
D'Alessandro, Lorenza A
Bohl, Sebastian
Börner, Kathleen
Grimm, Dirk
Klamt, Steffen
Klingmüller, Ursula
Schilling, Marcel
author_facet Mueller, Stephanie
Huard, Jérémy
Waldow, Katharina
Huang, Xiaoyun
D'Alessandro, Lorenza A
Bohl, Sebastian
Börner, Kathleen
Grimm, Dirk
Klamt, Steffen
Klingmüller, Ursula
Schilling, Marcel
author_sort Mueller, Stephanie
collection PubMed
description Liver regeneration is a tightly controlled process mainly achieved by proliferation of usually quiescent hepatocytes. The specific molecular mechanisms ensuring cell division only in response to proliferative signals such as hepatocyte growth factor (HGF) are not fully understood. Here, we combined quantitative time-resolved analysis of primary mouse hepatocyte proliferation at the single cell and at the population level with mathematical modeling. We showed that numerous G1/S transition components are activated upon hepatocyte isolation whereas DNA replication only occurs upon additional HGF stimulation. In response to HGF, Cyclin:CDK complex formation was increased, p21 rather than p27 was regulated, and Rb expression was enhanced. Quantification of protein levels at the restriction point showed an excess of CDK2 over CDK4 and limiting amounts of the transcription factor E2F-1. Analysis with our mathematical model revealed that T160 phosphorylation of CDK2 correlated best with growth factor-dependent proliferation, which we validated experimentally on both the population and the single cell level. In conclusion, we identified CDK2 phosphorylation as a gate-keeping mechanism to maintain hepatocyte quiescence in the absence of HGF.
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spelling pubmed-43809292015-04-03 T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes Mueller, Stephanie Huard, Jérémy Waldow, Katharina Huang, Xiaoyun D'Alessandro, Lorenza A Bohl, Sebastian Börner, Kathleen Grimm, Dirk Klamt, Steffen Klingmüller, Ursula Schilling, Marcel Mol Syst Biol Articles Liver regeneration is a tightly controlled process mainly achieved by proliferation of usually quiescent hepatocytes. The specific molecular mechanisms ensuring cell division only in response to proliferative signals such as hepatocyte growth factor (HGF) are not fully understood. Here, we combined quantitative time-resolved analysis of primary mouse hepatocyte proliferation at the single cell and at the population level with mathematical modeling. We showed that numerous G1/S transition components are activated upon hepatocyte isolation whereas DNA replication only occurs upon additional HGF stimulation. In response to HGF, Cyclin:CDK complex formation was increased, p21 rather than p27 was regulated, and Rb expression was enhanced. Quantification of protein levels at the restriction point showed an excess of CDK2 over CDK4 and limiting amounts of the transcription factor E2F-1. Analysis with our mathematical model revealed that T160 phosphorylation of CDK2 correlated best with growth factor-dependent proliferation, which we validated experimentally on both the population and the single cell level. In conclusion, we identified CDK2 phosphorylation as a gate-keeping mechanism to maintain hepatocyte quiescence in the absence of HGF. BlackWell Publishing Ltd 2015-03-14 /pmc/articles/PMC4380929/ /pubmed/26148348 http://dx.doi.org/10.15252/msb.20156032 Text en © 2015 The Authors. Published under the terms of the CC BY 4.0 license http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution 4.0 License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Mueller, Stephanie
Huard, Jérémy
Waldow, Katharina
Huang, Xiaoyun
D'Alessandro, Lorenza A
Bohl, Sebastian
Börner, Kathleen
Grimm, Dirk
Klamt, Steffen
Klingmüller, Ursula
Schilling, Marcel
T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes
title T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes
title_full T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes
title_fullStr T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes
title_full_unstemmed T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes
title_short T160-phosphorylated CDK2 defines threshold for HGF-dependent proliferation in primary hepatocytes
title_sort t160-phosphorylated cdk2 defines threshold for hgf-dependent proliferation in primary hepatocytes
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4380929/
https://www.ncbi.nlm.nih.gov/pubmed/26148348
http://dx.doi.org/10.15252/msb.20156032
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