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PMID: 18418068 Published · ppublish English Journal Article Research Support, N.I.H., Extramural Research Support, U.S. Gov't, Non-P.H.S.

Live cell imaging of XLF and XRCC4 reveals a novel view of protein assembly in the non-homologous end-joining pathway.

Cell cycle (Georgetown, Tex.) ·Vol. 7 ·No. 10 ·2008-05-15 ·Pages 1321-5

Yano K, Chen DJ

Abstract

XLF, also known as Cernunnos, is a newly identified core factor of the non-homologous end-joining (NHEJ) pathway for DNA double-strand breaks (DSBs) repair. XLF is known to stimulate DNA ligase IV in vitro through its interaction with XRCC4. Here, we outline the key findings on the dynamic behavior of XLF and XRCC4 at DSBs in living cells. XLF is quickly recruited to DSBs in the absence of XRCC4 or DNA-PKcs. The recruited XLF molecules constantly exchange at DSBs, and XRCC4 modulates the exchange rate of the recruited XLF. XRCC4 can be recruited to DSBs without DNA-PKcs, but DNA-PKcs stabilizes the recruited XRCC4. These observations are inconsistent with the prevailing concept that NHEJ proteins are sequentially recruited to DSBs, which is mainly supported by in vitro evidence. We propose a novel two-phase model for the assembly of NHEJ factors to DSBs in vivo. XLF, XRCC4 and DNA-PKcs are independently recruited to Ku-bound DSBs. The recruited factors are assembled into a large complex, in which the protein interactions observed in vitro define the stability of the recruited factors. This new view has broad implications for the mechanism of DSB sensing and functional protein assembly in the NHEJ pathway.

MeSH Terms
Cell Line DNA Repair/genetics,physiology DNA Repair Enzymes/metabolism,ultrastructure DNA-Binding Proteins/metabolism,ultrastructure Humans Models, Biological Multiprotein Complexes/metabolism
Chemicals
DNA-Binding Proteins Multiprotein Complexes NHEJ1 protein, human XRCC4 protein, human DNA Repair Enzymes
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Yano Ken-ichi
Division of Molecular Radiation Biology, Department of Radiation Oncology, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas 75390-9187, USA.
Chen David J
Article Info
Journal
Cell cycle (Georgetown, Tex.)
Abbr.
Cell Cycle
ISSN
1551-4005
Published
2008-05-15
Epub
2008-00-06
Pages
1321-5
Language
English
Region
United States
NLM ID
101137841
Subset
IM
Grants
NCI NIH HHS · CA50519 · United States
NCI NIH HHS · P01-CA92584 · United States
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