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c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells

Terminally differentiated cells have a reduced capacity to repair double-stranded breaks (DSB) in DNA, however, the underlying molecular mechanism remains unclear. Here, we show that miR-22 is upregulated during postmitotic differentiation of human breast MCF-7 cells, hematopoietic HL60 and K562 cel...

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Autores principales: Lee, Jung-Hee, Park, Seon-Joo, Kim, Seok Won, Hariharasudhan, Gurusamy, Jung, Sung-Mi, Jun, Semo, Yong, Jeongsik, You, Ho Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5564639/
https://www.ncbi.nlm.nih.gov/pubmed/28637007
http://dx.doi.org/10.18632/oncotarget.18389
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author Lee, Jung-Hee
Park, Seon-Joo
Kim, Seok Won
Hariharasudhan, Gurusamy
Jung, Sung-Mi
Jun, Semo
Yong, Jeongsik
You, Ho Jin
author_facet Lee, Jung-Hee
Park, Seon-Joo
Kim, Seok Won
Hariharasudhan, Gurusamy
Jung, Sung-Mi
Jun, Semo
Yong, Jeongsik
You, Ho Jin
author_sort Lee, Jung-Hee
collection PubMed
description Terminally differentiated cells have a reduced capacity to repair double-stranded breaks (DSB) in DNA, however, the underlying molecular mechanism remains unclear. Here, we show that miR-22 is upregulated during postmitotic differentiation of human breast MCF-7 cells, hematopoietic HL60 and K562 cells. Increased expression of miR-22 in differentiated cells was associated with decreased expression of MDC1, a protein that plays a key role in the response to DSBs. This downregulation of MDC1 was accompanied by reduced DSB repair, impaired recruitment of the protein to the site of DNA damage following IR. Conversely, inhibiting miR-22 enhanced MDC1 protein levels, recovered MDC1 foci, fully rescued DSB repair in terminally differentiated cells. Moreover, MDC1 levels, IR-induced MDC1 foci, and the efficiency of DSB repair were fully rescued by siRNA-mediated knockdown of c-Fos in differentiated cells. These findings indicate that the c-Fos/miR-22/MDC1 axis plays a relevant role in DNA repair in terminally differentiated cells, which may facilitate our understanding of molecular mechanism underlying the downregulating DNA repair in differentiated cells.
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spelling pubmed-55646392017-08-23 c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells Lee, Jung-Hee Park, Seon-Joo Kim, Seok Won Hariharasudhan, Gurusamy Jung, Sung-Mi Jun, Semo Yong, Jeongsik You, Ho Jin Oncotarget Research Paper Terminally differentiated cells have a reduced capacity to repair double-stranded breaks (DSB) in DNA, however, the underlying molecular mechanism remains unclear. Here, we show that miR-22 is upregulated during postmitotic differentiation of human breast MCF-7 cells, hematopoietic HL60 and K562 cells. Increased expression of miR-22 in differentiated cells was associated with decreased expression of MDC1, a protein that plays a key role in the response to DSBs. This downregulation of MDC1 was accompanied by reduced DSB repair, impaired recruitment of the protein to the site of DNA damage following IR. Conversely, inhibiting miR-22 enhanced MDC1 protein levels, recovered MDC1 foci, fully rescued DSB repair in terminally differentiated cells. Moreover, MDC1 levels, IR-induced MDC1 foci, and the efficiency of DSB repair were fully rescued by siRNA-mediated knockdown of c-Fos in differentiated cells. These findings indicate that the c-Fos/miR-22/MDC1 axis plays a relevant role in DNA repair in terminally differentiated cells, which may facilitate our understanding of molecular mechanism underlying the downregulating DNA repair in differentiated cells. Impact Journals LLC 2017-06-07 /pmc/articles/PMC5564639/ /pubmed/28637007 http://dx.doi.org/10.18632/oncotarget.18389 Text en Copyright: © 2017 Lee et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Lee, Jung-Hee
Park, Seon-Joo
Kim, Seok Won
Hariharasudhan, Gurusamy
Jung, Sung-Mi
Jun, Semo
Yong, Jeongsik
You, Ho Jin
c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells
title c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells
title_full c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells
title_fullStr c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells
title_full_unstemmed c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells
title_short c-Fos-dependent miR-22 targets MDC1 and regulates DNA repair in terminally differentiated cells
title_sort c-fos-dependent mir-22 targets mdc1 and regulates dna repair in terminally differentiated cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5564639/
https://www.ncbi.nlm.nih.gov/pubmed/28637007
http://dx.doi.org/10.18632/oncotarget.18389
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