نتایج جستجو برای: ژن xrcc4

تعداد نتایج: 16150  

Journal: :The Journal of Experimental Medicine 2007
Pauline Soulas-Sprauel Gwenaël Le Guyader Paola Rivera-Munoz Vincent Abramowski Christelle Olivier-Martin Cécile Goujet-Zalc Pierre Charneau Jean-Pierre de Villartay

V(D)J recombination and immunoglobulin class switch recombination (CSR) are two somatic rearrangement mechanisms that proceed through the introduction of double-strand breaks (DSBs) in DNA. Although the DNA repair factor XRCC4 is essential for the resolution of DNA DSB during V(D)J recombination, its role in CSR has not been established. To bypass the embryonic lethality of XRCC4 deletion in mi...

2017
Davide Normanno Aurélie Négrel Abinadabe J de Melo Stéphane Betzi Katheryn Meek Mauro Modesti

XRCC4 and DNA Ligase 4 (LIG4) form a tight complex that provides DNA ligase activity for classical non-homologous end joining (the predominant DNA double-strand break repair pathway in higher eukaryotes) and is stimulated by XLF. Independently of LIG4, XLF also associates with XRCC4 to form filaments that bridge DNA. These XRCC4/XLF complexes rapidly load and connect broken DNA, thereby stimula...

Journal: :The EMBO journal 1999
M Modesti J E Hesse M Gellert

Mammalian cells are protected from the effects of DNA double-strand breaks by end-joining repair. Cells lacking the Xrcc4 protein are hypersensitive to agents that induce DNA double-strand breaks, and are unable to complete V(D)J recombination. The residual repair of broken DNA ends in XRCC4-deficient cells requires short sequence homologies, thus possibly implicating Xrcc4 in end alignment. We...

2011
Michal Hammel Martial Rey Yaping Yu Rajam S. Mani Scott Classen Mona Liu Michael E. Pique Shujuan Fang Brandi L. Mahaney Michael Weinfeld David C. Schriemer Susan P. Lees-Miller John A. Tainer

The XRCC4-like factor (XLF)-XRCC4 complex is essential for nonhomologous end joining, the major repair pathway for DNA double strand breaks in human cells. Yet, how XLF binds XRCC4 and impacts nonhomologous end joining functions has been enigmatic. Here, we report the XLF-XRCC4 complex crystal structure in combination with biophysical and mutational analyses to define the XLF-XRCC4 interactions...

Journal: :Nucleic acids research 1998
J O Han L A Erskine M M Purugganan T D Stamato D B Roth

V(D)J recombination assembles immunoglobulin (Ig) and T cell receptor (TCR) gene segments during lymphocyte development. Recombination is initiated by the RAG-1 and RAG-2 proteins, which introduce double-stranded DNA breaks (DSB) adjacent to the Ig and TCR gene segments. The broken ends are joined by the DSB repair machinery, which includes the XRCC4 protein. While XRCC4 is essential for both D...

2012
Sara N. Andres Alexandra Vergnes Dejan Ristic Claire Wyman Mauro Modesti Murray Junop

DNA double-strand breaks pose a significant threat to cell survival and must be repaired. In higher eukaryotes, such damage is repaired efficiently by non-homologous end joining (NHEJ). Within this pathway, XRCC4 and XLF fulfill key roles required for end joining. Using DNA-binding and -bridging assays, combined with direct visualization, we present evidence for how XRCC4-XLF complexes robustly...

Journal: :Biochemical Society transactions 2011
Qian Wu Takashi Ochi Dijana Matak-Vinkovic Carol V Robinson Dimitri Y Chirgadze Tom L Blundell

XRCC4 (X-ray cross-complementation group 4) and XLF (XRCC4-like factor) are two essential interacting proteins in the human NHEJ (non-homologous end-joining) pathway that repairs DNA DSBs (double-strand breaks). The individual crystal structures show that the dimeric proteins are homologues with protomers containing head domains and helical coiled-coil tails related by approximate two-fold symm...

2008
Leonie Schulte-Uentrop Raafat A. El-Awady Lena Schliecker Henning Willers Jochen Dahm-Daphi

Non-homologous end-joining (NHEJ) of DNA double-strand breaks (DSBs) is mediated by two protein complexes comprising Ku80/Ku70/DNA-PKcs/Artemis and XRCC4/LigaseIV/XLF. Loss of Ku or XRCC4/LigaseIV function compromises the rejoining of radiation-induced DSBs and leads to defective V(D)J recombination. In this study, we sought to define how XRCC4 and Ku80 affect NHEJ of site-directed chromosomal ...

2016
Manabu KOIKE Yasutomo YUTOKU Aki KOIKE

Various chemotherapies and radiation therapies are useful for killing cancer cells mainly by inducing DNA double-strand breaks (DSBs). Uncovering the molecular mechanisms of DSB repair processes is crucial for developing next-generation radiotherapies and chemotherapeutics for human and animal cancers. XRCC4 plays a critical role in Ku-dependent nonhomologous DNA-end joining (NHEJ) in human cel...

2014
Shoji IMAMICHI Mukesh Kumar SHARMA Radhika Pankaj KAMDAR Mikoto FUKUCHI Yoshihisa MATSUMOTO

XRCC4 (X-ray cross-complementation group 4) is a protein associated with DNA ligase IV, which is thought to join two DNA ends at the final step of DNA double-strand break repair through non-homologous end-joining. It has been shown that, in response to irradiation or treatment with DNA damaging agents, XRCC4 undergoes phosphorylation, requiring DNA-PK. Here we explored possible role of ATM, whi...

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