نتایج جستجو برای: nhej

تعداد نتایج: 1322  

Journal: :PLoS Genetics 2008
Shun-Fu Tseng Abram Gabriel Shu-Chun Teng

Genotoxic agents that cause double-strand breaks (DSBs) often generate damage at the break termini. Processing enzymes, including nucleases and polymerases, must remove damaged bases and/or add new bases before completion of repair. Artemis is a nuclease involved in mammalian nonhomologous end joining (NHEJ), but in Saccharomyces cerevisiae the nucleases and polymerases involved in NHEJ pathway...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2013
Edward J Bartlett Nigel C Brissett Aidan J Doherty

Nonhomologous end-joining (NHEJ) pathways repair DNA double-strand breaks (DSBs) in eukaryotes and many prokaryotes, although it is not reported to operate in the third domain of life, archaea. Here, we describe a complete NHEJ complex, consisting of DNA ligase (Lig), polymerase (Pol), phosphoesterase (PE), and Ku from a mesophillic archaeon, Methanocella paludicola (Mpa). Mpa Lig has limited D...

2011
Deniz Simsek Erika Brunet Sunnie Yan-Wai Wong Sachin Katyal Yankun Gao Peter J. McKinnon Jacqueline Lou Lei Zhang James Li Edward J. Rebar Philip D. Gregory Michael C. Holmes Maria Jasin

Nonhomologous end-joining (NHEJ) is the primary DNA repair pathway thought to underlie chromosomal translocations and other genomic rearrangements in somatic cells. The canonical NHEJ pathway, including DNA ligase IV (Lig4), suppresses genomic instability and chromosomal translocations, leading to the notion that a poorly defined, alternative NHEJ (alt-NHEJ) pathway generates these rearrangemen...

Journal: :The EMBO journal 2011
Atsushi Shibata Sandro Conrad Julie Birraux Verena Geuting Olivia Barton Amani Ismail Andreas Kakarougkas Katheryn Meek Gisela Taucher-Scholz Markus Löbrich Penny A Jeggo

DNA non-homologous end joining (NHEJ) and homologous recombination (HR) function to repair DNA double-strand breaks (DSBs) in G2 phase with HR preferentially repairing heterochromatin-associated DSBs (HC-DSBs). Here, we examine the regulation of repair pathway usage at two-ended DSBs in G2. We identify the speed of DSB repair as a major component influencing repair pathway usage showing that DN...

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...

Journal: :DNA repair 2014
Lisa Woodbine Andrew R Gennery Penny A Jeggo

DNA non-homologous end-joining (NHEJ) is the major DNA double strand break (DSB) repair pathway in mammalian cells. Defects in NHEJ proteins confer marked radiosensitivity in cell lines and mice models, since radiation potently induces DSBs. The process of V(D)J recombination functions during the development of the immune response, and involves the introduction and rejoining of programmed DSBs ...

2016
Vipul Kumar

V(D)J recombination requires the formation and resolution of programmed DNA double-strand breaks (DSBs) to effect the gene rearrangements necessary for immunoglobulin and T cell receptor formation. Improper repair of DNA DSBs can lead to deleterious consequences for the cell, including loss of genetic information, cell death, and formation of chromosomal translocations. The classical nonhomolog...

Journal: :Zeitschrift fur Naturforschung. C, Journal of biosciences 2005
Elzbieta Pastwa Tomasz Poplawski Agnieszka Czechowska Mariusz Malinowski Janusz Blasiak

Double-strand breaks (DSBs) are the most serious DNA damage which, if unrepaired or misrepaired, may lead to cell death, genomic instability or cancer transformation. In human cells they can be repaired mainly by non-homologous DNA end joining (NHEJ). The efficacy of NHEJ pathway was examined in normal human lymphocytes and K562 myeloid leukemic cells expressing the BCR/ABL oncogenic tyrosine k...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2017
Ragini Bhargava Caree R Carson Gabriella Lee Jeremy M Stark

A likely mechanism of chromosomal rearrangement formation involves joining the ends from two different chromosomal double-strand breaks (DSBs). These events could potentially be mediated by either of two end-joining (EJ) repair pathways [canonical nonhomologous end joining (C-NHEJ) or alternative end joining (ALT-EJ)], which cause distinct rearrangement junction patterns. The relative role of t...

2008
Wael Y. Mansour Sabine Schumacher Raphael Rosskopf Tim Rhein Filip Schmidt-Petersen Fruszina Gatzemeier Friedrich Haag Kerstin Borgmann Henning Willers Jochen Dahm-Daphi

In mammalian cells, DNA double-strand breaks (DSBs) are repaired by three pathways, nonhomologous end-joining (NHEJ), gene conversion (GC) and single-strand annealing (SSA). These pathways are distinct with regard to repair efficiency and mutagenic potential and must be tightly controlled to preserve viability and genomic stability. Here, we employed chromosomal reporter constructs to character...

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