Cargando…

Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage

CCDC6 was originally identified in chimeric genes caused by chromosomal translocation involving the RET proto-oncogene in some thryoid tumors mostly upon ionizing radiation exposure. Recognised as a pro-apoptotic phosphoprotein that negatively regulates CREB1-dependent transcription, CCDC6 is an ATM...

Descripción completa

Detalles Bibliográficos
Autores principales: Merolla, Francesco, Luise, Chiara, Muller, Mark T., Pacelli, Roberto, Fusco, Alfredo, Celetti, Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3360053/
https://www.ncbi.nlm.nih.gov/pubmed/22655027
http://dx.doi.org/10.1371/journal.pone.0036177
_version_ 1782233946618068992
author Merolla, Francesco
Luise, Chiara
Muller, Mark T.
Pacelli, Roberto
Fusco, Alfredo
Celetti, Angela
author_facet Merolla, Francesco
Luise, Chiara
Muller, Mark T.
Pacelli, Roberto
Fusco, Alfredo
Celetti, Angela
author_sort Merolla, Francesco
collection PubMed
description CCDC6 was originally identified in chimeric genes caused by chromosomal translocation involving the RET proto-oncogene in some thryoid tumors mostly upon ionizing radiation exposure. Recognised as a pro-apoptotic phosphoprotein that negatively regulates CREB1-dependent transcription, CCDC6 is an ATM substrate that is responsive to genotoxic stress. Here we report that following genotoxic stress, loss or inactivation of CCDC6 in cancers that carry the CCDC6 fusion, accelerates the dephosphorylation of pH2AX S139, resulting in defective G2 arrest and premature mitotic entry. Moreover, we show that CCDC6 depleted cells appear to repair DNA damaged in a shorter time compared to controls, based on reporter assays in cells. High-troughput proteomic screening predicted the interaction between the CCDC6 gene product and the catalytic subunit of Serin–Threonin Protein Phosphatase 4 (PP4c) recently identified as the evolutionarily conserved pH2AX S139 phosphatase that is activated upon DNA Damage. We describe the interaction between CCDC6 and PP4c and we report the modulation of PP4c enzymatic activity in CCDC6 depleted cells. We discuss the functional significance of CCDC6-PP4c interactions and hypothesize that CCDC6 may act in the DNA Damage Response by negatively modulating PP4c activity. Overall, our data suggest that in primary tumours the loss of CCDC6 function could influence genome stability and thereby contribute to carcinogenesis.
format Online
Article
Text
id pubmed-3360053
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-33600532012-05-31 Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage Merolla, Francesco Luise, Chiara Muller, Mark T. Pacelli, Roberto Fusco, Alfredo Celetti, Angela PLoS One Research Article CCDC6 was originally identified in chimeric genes caused by chromosomal translocation involving the RET proto-oncogene in some thryoid tumors mostly upon ionizing radiation exposure. Recognised as a pro-apoptotic phosphoprotein that negatively regulates CREB1-dependent transcription, CCDC6 is an ATM substrate that is responsive to genotoxic stress. Here we report that following genotoxic stress, loss or inactivation of CCDC6 in cancers that carry the CCDC6 fusion, accelerates the dephosphorylation of pH2AX S139, resulting in defective G2 arrest and premature mitotic entry. Moreover, we show that CCDC6 depleted cells appear to repair DNA damaged in a shorter time compared to controls, based on reporter assays in cells. High-troughput proteomic screening predicted the interaction between the CCDC6 gene product and the catalytic subunit of Serin–Threonin Protein Phosphatase 4 (PP4c) recently identified as the evolutionarily conserved pH2AX S139 phosphatase that is activated upon DNA Damage. We describe the interaction between CCDC6 and PP4c and we report the modulation of PP4c enzymatic activity in CCDC6 depleted cells. We discuss the functional significance of CCDC6-PP4c interactions and hypothesize that CCDC6 may act in the DNA Damage Response by negatively modulating PP4c activity. Overall, our data suggest that in primary tumours the loss of CCDC6 function could influence genome stability and thereby contribute to carcinogenesis. Public Library of Science 2012-05-24 /pmc/articles/PMC3360053/ /pubmed/22655027 http://dx.doi.org/10.1371/journal.pone.0036177 Text en Merolla 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
Merolla, Francesco
Luise, Chiara
Muller, Mark T.
Pacelli, Roberto
Fusco, Alfredo
Celetti, Angela
Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage
title Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage
title_full Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage
title_fullStr Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage
title_full_unstemmed Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage
title_short Loss of CCDC6, the First Identified RET Partner Gene, Affects pH2AX S139 Levels and Accelerates Mitotic Entry upon DNA Damage
title_sort loss of ccdc6, the first identified ret partner gene, affects ph2ax s139 levels and accelerates mitotic entry upon dna damage
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3360053/
https://www.ncbi.nlm.nih.gov/pubmed/22655027
http://dx.doi.org/10.1371/journal.pone.0036177
work_keys_str_mv AT merollafrancesco lossofccdc6thefirstidentifiedretpartnergeneaffectsph2axs139levelsandacceleratesmitoticentryupondnadamage
AT luisechiara lossofccdc6thefirstidentifiedretpartnergeneaffectsph2axs139levelsandacceleratesmitoticentryupondnadamage
AT mullermarkt lossofccdc6thefirstidentifiedretpartnergeneaffectsph2axs139levelsandacceleratesmitoticentryupondnadamage
AT pacelliroberto lossofccdc6thefirstidentifiedretpartnergeneaffectsph2axs139levelsandacceleratesmitoticentryupondnadamage
AT fuscoalfredo lossofccdc6thefirstidentifiedretpartnergeneaffectsph2axs139levelsandacceleratesmitoticentryupondnadamage
AT celettiangela lossofccdc6thefirstidentifiedretpartnergeneaffectsph2axs139levelsandacceleratesmitoticentryupondnadamage