نتایج جستجو برای: xlf

تعداد نتایج: 235  

2009
Enriqueta Riballo Lisa Woodbine Thomas Stiff Sarah A. Walker Aaron A. Goodarzi Penny A. Jeggo

XLF-Cernunnos (XLF) is a component of the DNA ligase IV-XRCC4 (LX) complex, which functions during DNA non-homologous end joining (NHEJ). Here, we use biochemical and cellular approaches to probe the impact of XLF on LX activities. We show that XLF stimulates adenylation of LX complexes de-adenylated by pyrophosphate or following LX decharging during ligation. XLF enhances LX ligation activity ...

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...

2012
Sunetra Roy Sara N. Andres Alexandra Vergnes Jessica A. Neal Yao Xu Yaping Yu Susan P. Lees-Miller Murray Junop Mauro Modesti Katheryn Meek

XRCC4 and XLF are structurally related proteins important for DNA Ligase IV function. XRCC4 forms a tight complex with DNA Ligase IV while XLF interacts directly with XRCC4. Both XRCC4 and XLF form homodimers that can polymerize as heterotypic filaments independently of DNA Ligase IV. Emerging structural and in vitro biochemical data suggest that XRCC4 and XLF together generate a filamentous st...

2015
Manabu KOIKE Yasutomo YUTOKU Aki KOIKE

Clinically, many chemotherapeutics and ionizing radiation (IR) have been applied for the treatment of various types of human and animal malignancies. These treatments kill tumor cells by causing DNA double-strand breaks (DSBs). Core factors of classical nonhomologous DNA-end joining (C-NHEJ) play a vital role in DSB repair. Thus, it is indispensable to clarify the mechanisms of C-NHEJ in order ...

Journal: :EMBO reports 2008
Ken-ichi Yano Keiko Morotomi-Yano Shih-Ya Wang Naoya Uematsu Kyung-Jong Lee Aroumougame Asaithamby Eric Weterings David J Chen

XRCC4-like factor (XLF)--also known as Cernunnos--has recently been shown to be involved in non-homologous end-joining (NHEJ), which is the main pathway for the repair of DNA double-strand breaks (DSBs) in mammalian cells. XLF is likely to enhance NHEJ by stimulating XRCC4-ligase IV-mediated joining of DSBs. Here, we report mechanistic details of XLF recruitment to DSBs. Live cell imaging combi...

2017
Manabu KOIKE Yasutomo YUTOKU Aki KOIKE

Understanding the molecular mechanisms of DNA double-strand break (DSB) repair processes, especially nonhomologous DNA-end joining (NHEJ), is critical for developing next-generation radiotherapies and chemotherapeutics for human and animal cancers. The localization, protein-protein interactions and post-translational modifications of core NHEJ factors, such as human Ku70 and Ku80, might play cr...

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...

2017
Xiangyu Liu Zhengping Shao Wenxia Jiang Brian J. Lee Shan Zha

Non-homologous end-joining (NHEJ) is the most prominent DNA double strand break (DSB) repair pathway in mammalian cells. PAXX is the newest NHEJ factor, which shares structural similarity with known NHEJ factors-XRCC4 and XLF. Here we report that PAXX is dispensable for physiological NHEJ in otherwise wild-type mice. Yet Paxx-/- mice require XLF and Xlf-/- mice require PAXX for end-ligation. As...

Journal: :Molecular cell 2008
Gang Li Frederick W Alt Hwei-Ling Cheng James W Brush Peter H Goff Mike M Murphy Sonia Franco Yu Zhang Shan Zha

Mutations in XLF/Cernunnos (XLF) cause lymphocytopenia in humans, and various studies suggest an XLF role in classical nonhomologous end joining (C-NHEJ). We now find that XLF-deficient mouse embryonic fibroblasts are ionizing radiation (IR) sensitive and severely impaired for ability to support V(D)J recombination. Yet mature lymphocyte numbers in XLF-deficient mice are only modestly decreased...

2016
Chloé Lescale Hélène Lenden Hasse Andrew N. Blackford Gabriel Balmus Joy J. Bianchi Wei Yu Léa Bacoccina Angélique Jarade Christophe Clouin Rohan Sivapalan Bernardo Reina-San-Martin Stephen P. Jackson Ludovic Deriano

Paralog of XRCC4 and XLF (PAXX) is a member of the XRCC4 superfamily and plays a role in nonhomologous end-joining (NHEJ), a DNA repair pathway critical for lymphocyte antigen receptor gene assembly. Here, we find that the functions of PAXX and XLF in V(D)J recombination are masked by redundant joining activities. Thus, combined PAXX and XLF deficiency leads to an inability to join RAG-cleaved ...

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