Robust chromosomal DNA repair via alternative end-joining in the absence of X-ray repair cross-complementing protein 1 (XRCC1).

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TitleRobust chromosomal DNA repair via alternative end-joining in the absence of X-ray repair cross-complementing protein 1 (XRCC1).
Publication TypeJournal Article
Year of Publication2012
AuthorsBoboila, C, Oksenych, V, Gostissa, M, Wang, JH, Zha, S, Zhang, Y, Chai, H, Lee, C-S, Jankovic, M, Saez, L-MAlbertorio, Nussenzweig, MC, McKinnon, PJ, Alt, FW, Schwer, B
JournalProc Natl Acad Sci U S A
Volume109
Issue7
Pagination2473-8
Date Published2012 Feb 14
ISSN1091-6490
KeywordsAnimals, B-Lymphocytes, Cell Lineage, DNA Repair, DNA-Binding Proteins, Mice, Translocation, Genetic
Abstract

Classical nonhomologous DNA end-joining (C-NHEJ), which is a major DNA double-strand break (DSB) repair pathway in mammalian cells, plays a dominant role in joining DSBs during Ig heavy chain (IgH) class switch recombination (CSR) in activated B lymphocytes. However, in B cells deficient for one or more requisite C-NHEJ factors, such as DNA ligase 4 (Lig4) or XRCC4, end-joining during CSR occurs by a distinct alternative end-joining (A-EJ) pathway. A-EJ also has been implicated in joining DSBs found in oncogenic chromosomal translocations. DNA ligase 3 (Lig3) and its cofactor XRCC1 are widely considered to be requisite A-EJ factors, based on biochemical studies or extrachromosomal substrate end-joining studies. However, potential roles for these factors in A-EJ of endogenous chromosomal DSBs have not been tested. Here, we report that Xrcc1 inactivation via conditional gene-targeted deletion in WT or XRCC4-deficient primary B cells does not have an impact on either CSR or IgH/c-myc translocations in activated B lymphocytes. Indeed, homozygous deletion of Xrcc1 does not impair A-EJ of I-SceI-induced DSBs in XRCC4-deficient pro-B-cell lines. Correspondingly, substantial depletion of Lig3 in Lig4-deficient primary B cells or B-cell lines does not impair A-EJ of CSR-mediated DSBs or formation of IgH/c-myc translocations. Our findings firmly demonstrate that XRCC1 is not a requisite factor for A-EJ of chromosomal DSBs and raise the possibility that DNA ligase 1 (Lig1) may contribute more to A-EJ than previously considered.

DOI10.1073/pnas.1121470109
Alternate JournalProc. Natl. Acad. Sci. U.S.A.
PubMed ID22308491
PubMed Central IDPMC3289296
Grant List5T32CA009382 / CA / NCI NIH HHS / United States
5T32CA009382-26 / CA / NCI NIH HHS / United States
AI037526 / AI / NIAID NIH HHS / United States
AI077595 / AI / NIAID NIH HHS / United States
CA-21765 / CA / NCI NIH HHS / United States
CA092625 / CA / NCI NIH HHS / United States
NS-37956 / NS / NINDS NIH HHS / United States
P01 CA092625 / CA / NCI NIH HHS / United States
R01 AI077595 / AI / NIAID NIH HHS / United States
/ / Howard Hughes Medical Institute / United States