Preprint · OA
via OpenAlex
Differential Requirement for H2AX and 53BP1 in Organismal Development and Genome Maintenance in the Absence of Poly(ADP)ribosyl Polymerase 1
Benjamin C. Orsburn, Beatriz Escudero, Mansi Prakash, Silvia Gesheva, Guosheng Liu, David L. Huso, Sonia Franco
Molecular and Cellular Biology · 2010 · ▲ 30 citations
Abstract
Combined deficiencies of poly(ADP)ribosyl polymerase 1 (PARP1) and ataxia telangiectasia mutated (ATM) result in synthetic lethality and, in the mouse, early embryonic death. Here, we investigated the genetic requirements for this lethality via analysis of mice deficient for PARP1 and either of two ATM-regulated DNA damage response (DDR) factors: histone H2AX and 53BP1. We found that, like ATM, H2AX is essential for viability in a PARP1-deficient background. In contrast, deficiency for 53BP1 modestly exacerbates phenotypes of growth retardation, genomic instability, and organismal radiosensitivity observed in PARP1-deficient mice. To gain mechanistic insights into these different phenotypes, we examined roles for 53BP1 in the repair of replication-associated double-strand breaks (DSBs) in several cellular contexts. We show that 53BP1 is required for DNA-PKcs-dependent repair of hydroxyurea (HU)-induced DSBs but dispensable for RPA/RAD51-dependent DSB repair in the same setting. Moreover, repair of mitomycin C (MMC)-induced DSBs and sister chromatid exchanges (SCEs), two RAD51-dependent processes, are 53BP1 independent. Overall, our findings define 53BP1 as a main facilitator of nonhomologous end joining (NHEJ) during the S phase of the cell cycle, beyond highly specialized lymphocyte rearrangements. These findings have important implications for our understanding of the mechanisms whereby ATM-regulated DDR prevents human aging and cancer.
◌ CITATION ONLY
Full text is not openly licensed for redistribution here. Read it at the source:
Provenance
- Source
- OpenAlex
- DOI
- 10.1128/mcb.00091-10
- Canonical
- link ↗
- Fetched
- 2026-06-02 MST
Cite this
APA
Orsburn, B.C., Escudero, B., Prakash, M., Gesheva, S., Liu, G., Huso, D.L., & Franco, S. (2010). Differential Requirement for H2AX and 53BP1 in Organismal Development and Genome Maintenance in the Absence of Poly(ADP)ribosyl Polymerase 1. <em>Molecular and Cellular Biology</em>. https://doi.org/10.1128/mcb.00091-10
Vancouver
Orsburn BC, Escudero B, Prakash M, Gesheva S, Liu G, Huso DL, et al. Differential Requirement for H2AX and 53BP1 in Organismal Development and Genome Maintenance in the Absence of Poly(ADP)ribosyl Polymerase 1. Molecular and Cellular Biology. 2010. doi:10.1128/mcb.00091-10.
BibTeX
@unpublished{benjamin2010Differ,
title = {Differential Requirement for H2AX and 53BP1 in Organismal Development and Genome Maintenance in the Absence of Poly(ADP)ribosyl Polymerase 1},
author = {Benjamin C. Orsburn and Beatriz Escudero and Mansi Prakash and Silvia Gesheva and Guosheng Liu and David L. Huso and Sonia Franco},
journal = {Molecular and Cellular Biology},
year = {2010},
doi = {10.1128/mcb.00091-10},
}
Research neighborhood
References, citing works, and semantically nearest findings. Click a node to open it.
Related findings
BMC Systems Biology 2014
Open access · CC-BY
Stress induced telomere shortening: longer life with less mutations?
Aging Cell 2007
Open access · OA
Delayed kinetics of DNA double‐strand break processing in normal and pathological aging
Cell Cycle 2012
Open access · OA
Posttranslational control of telomere maintenance and the telomere damage response
dsm-firmenich Switzerland AG 2025
Open access · US-GOV
A Randomized, Placebo-controlled, Double-blind Clinical Study to Evaluate the Effect of Humiome® Post LB on Stress, Anxiety, and Cognition in Aging Adults
Cell 1999
Open access · OA
Longevity, Stress Response, and Cancer in Aging Telomerase-Deficient Mice
Aging 2021
Open access · CC-BY