Cargando…

DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes

DNA double strand breaks are generated by genotoxic agents and by cellular endonucleases as intermediates of several important physiologic processes. The cellular response to genotoxic DNA breaks includes the activation of transcriptional programs known primarily to regulate cell cycle checkpoints a...

Descripción completa

Detalles Bibliográficos
Autores principales: Bredemeyer, Andrea L., Helmink, Beth A., Innes, Cynthia L., Calderon, Boris, McGinnis, Lisa M., Mahowald, Grace K., Gapud, Eric J., Walker, Laura M., Collins, Jennifer B., Weaver, Brian K., Mandik-Nayak, Laura, Schreiber, Robert D., Allen, Paul M., May, Michael J., Paules, Richard S., Bassing, Craig H., Sleckman, Barry P.
Formato: Texto
Lenguaje:English
Publicado: 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2605662/
https://www.ncbi.nlm.nih.gov/pubmed/18849970
http://dx.doi.org/10.1038/nature07392
_version_ 1782162869968699392
author Bredemeyer, Andrea L.
Helmink, Beth A.
Innes, Cynthia L.
Calderon, Boris
McGinnis, Lisa M.
Mahowald, Grace K.
Gapud, Eric J.
Walker, Laura M.
Collins, Jennifer B.
Weaver, Brian K.
Mandik-Nayak, Laura
Schreiber, Robert D.
Allen, Paul M.
May, Michael J.
Paules, Richard S.
Bassing, Craig H.
Sleckman, Barry P.
author_facet Bredemeyer, Andrea L.
Helmink, Beth A.
Innes, Cynthia L.
Calderon, Boris
McGinnis, Lisa M.
Mahowald, Grace K.
Gapud, Eric J.
Walker, Laura M.
Collins, Jennifer B.
Weaver, Brian K.
Mandik-Nayak, Laura
Schreiber, Robert D.
Allen, Paul M.
May, Michael J.
Paules, Richard S.
Bassing, Craig H.
Sleckman, Barry P.
author_sort Bredemeyer, Andrea L.
collection PubMed
description DNA double strand breaks are generated by genotoxic agents and by cellular endonucleases as intermediates of several important physiologic processes. The cellular response to genotoxic DNA breaks includes the activation of transcriptional programs known primarily to regulate cell cycle checkpoints and cell survival1–5. DNA double strand breaks are generated in all developing lymphocytes during the assembly of antigen receptor genes, a process that is essential for normal lymphocyte development. Here we demonstrate that these physiologic DNA breaks activate a broad transcriptional program. This program transcends the canonical DNA double strand break response and includes many genes that regulate diverse cellular processes important for lymphocyte development. Moreover, the expression of several of these genes is regulated similarly in response to genotoxic DNA damage. Thus, physiologic DNA double strand breaks provide cues that can regulate cell-type-specific processes not directly involved in maintaining the integrity of the genome, and genotoxic DNA breaks could disrupt normal cellular functions by corrupting these processes.
format Text
id pubmed-2605662
institution National Center for Biotechnology Information
language English
publishDate 2008
record_format MEDLINE/PubMed
spelling pubmed-26056622009-06-11 DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes Bredemeyer, Andrea L. Helmink, Beth A. Innes, Cynthia L. Calderon, Boris McGinnis, Lisa M. Mahowald, Grace K. Gapud, Eric J. Walker, Laura M. Collins, Jennifer B. Weaver, Brian K. Mandik-Nayak, Laura Schreiber, Robert D. Allen, Paul M. May, Michael J. Paules, Richard S. Bassing, Craig H. Sleckman, Barry P. Nature Article DNA double strand breaks are generated by genotoxic agents and by cellular endonucleases as intermediates of several important physiologic processes. The cellular response to genotoxic DNA breaks includes the activation of transcriptional programs known primarily to regulate cell cycle checkpoints and cell survival1–5. DNA double strand breaks are generated in all developing lymphocytes during the assembly of antigen receptor genes, a process that is essential for normal lymphocyte development. Here we demonstrate that these physiologic DNA breaks activate a broad transcriptional program. This program transcends the canonical DNA double strand break response and includes many genes that regulate diverse cellular processes important for lymphocyte development. Moreover, the expression of several of these genes is regulated similarly in response to genotoxic DNA damage. Thus, physiologic DNA double strand breaks provide cues that can regulate cell-type-specific processes not directly involved in maintaining the integrity of the genome, and genotoxic DNA breaks could disrupt normal cellular functions by corrupting these processes. 2008-10-12 2008-12-11 /pmc/articles/PMC2605662/ /pubmed/18849970 http://dx.doi.org/10.1038/nature07392 Text en http://www.nature.com/authors/editorial_policies/license.html#terms Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Bredemeyer, Andrea L.
Helmink, Beth A.
Innes, Cynthia L.
Calderon, Boris
McGinnis, Lisa M.
Mahowald, Grace K.
Gapud, Eric J.
Walker, Laura M.
Collins, Jennifer B.
Weaver, Brian K.
Mandik-Nayak, Laura
Schreiber, Robert D.
Allen, Paul M.
May, Michael J.
Paules, Richard S.
Bassing, Craig H.
Sleckman, Barry P.
DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes
title DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes
title_full DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes
title_fullStr DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes
title_full_unstemmed DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes
title_short DNA double strand breaks activate a multi-functional genetic program in developing lymphocytes
title_sort dna double strand breaks activate a multi-functional genetic program in developing lymphocytes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2605662/
https://www.ncbi.nlm.nih.gov/pubmed/18849970
http://dx.doi.org/10.1038/nature07392
work_keys_str_mv AT bredemeyerandreal dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT helminkbetha dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT innescynthial dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT calderonboris dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT mcginnislisam dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT mahowaldgracek dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT gapudericj dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT walkerlauram dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT collinsjenniferb dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT weaverbriank dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT mandiknayaklaura dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT schreiberrobertd dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT allenpaulm dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT maymichaelj dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT paulesrichards dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT bassingcraigh dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes
AT sleckmanbarryp dnadoublestrandbreaksactivateamultifunctionalgeneticprogramindevelopinglymphocytes