نتایج جستجو برای: double strandbreak dsb

تعداد نتایج: 241478  

Journal: :Cell 1999
Allyson M Holmes James E Haber

Mitotic double-strand break (DSB)-induced gene conversion at MAT in Saccharomyces cerevisiae was analyzed molecularly in mutant strains thermosensitive for essential replication factors. The processivity cofactors PCNA and RFC are essential even to synthesize as little as 30 nucleotides following strand invasion. Both PCNA-associated DNA polymerases delta and epsilon are important for gene conv...

Journal: :Nucleic Acids Research 2006
Jean-Pascal Capp François Boudsocq Pascale Bertrand Audrey Laroche-Clary Philippe Pourquier Bernard S. Lopez Christophe Cazaux Jean-Sébastien Hoffmann Yvan Canitrot

DNA polymerase lambda (pollambda) is a recently identified DNA polymerase whose cellular function remains elusive. Here we show, that pollambda participates at the molecular level in a chromosomal context, in the repair of DNA double strand breaks (DSB) via non-homologous end joining (NHEJ) in mammalian cells. The expression of a catalytically inactive form of pollambda (pollambdaDN) decreases ...

2016
Agnes Schipler Veronika Mladenova Aashish Soni Vladimir Nikolov Janapriya Saha Emil Mladenov George Iliakis

Chromosome translocations are hallmark of cancer and of radiation-induced cell killing, reflecting joining of incongruent DNA-ends that alter the genome. Translocation-formation requires DNA end-joining mechanisms and incompletely characterized, permissive chromatin conditions. We show that chromatin destabilization by clusters of DNA double-strand-breaks (DSBs) generated by the I-SceI meganucl...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2011
Liangran Zhang Keun P Kim Nancy E Kleckner Aurora Storlazzi

Meiotic recombination initiates via programmed double-strand breaks (DSBs). We investigate whether, at a given initiation site, DSBs occur independently among the four available chromatids. For a single DSB "hot spot", the proportions of nuclei exhibiting zero, one, or two (or more) observable events were defined by tetrad analysis and compared with those predicted by different DSB distribution...

2010
Farjana Fattah Eu Han Lee Natalie Weisensel Yongbao Wang Natalie Lichter Eric A. Hendrickson

The repair of DNA double-strand breaks (DSBs) is critical for the maintenance of genomic integrity and viability for all organisms. Mammals have evolved at least two genetically discrete ways to mediate DNA DSB repair: homologous recombination (HR) and non-homologous end joining (NHEJ). In mammalian cells, most DSBs are preferentially repaired by NHEJ. Recent work has demonstrated that NHEJ con...

2013
Shintaro Yamada Kunihiro Ohta Takatomi Yamada

Histone modifications are associated with meiotic recombination hotspots, discrete sites with augmented recombination frequency. For example, trimethylation of histone H3 lysine4 (H3K4me3) marks most hotspots in budding yeast and mouse. Modified histones are known to regulate meiotic recombination partly by promoting DNA double-strand break (DSB) formation at hotspots, but the role and precise ...

2015
Matteo Ferrari Diego Dibitetto Giuseppe De Gregorio Vinay V. Eapen Chetan C. Rawal Federico Lazzaro Michael Tsabar Federica Marini James E. Haber Achille Pellicioli

The Mre11-Rad50-Xrs2 nuclease complex, together with Sae2, initiates the 5'-to-3' resection of Double-Strand DNA Breaks (DSBs). Extended 3' single stranded DNA filaments can be exposed from a DSB through the redundant activities of the Exo1 nuclease and the Dna2 nuclease with the Sgs1 helicase. In the absence of Sae2, Mre11 binding to a DSB is prolonged, the two DNA ends cannot be kept tethered...

Journal: :Genetics 2008
Dongliang Wu Leana M Topper Thomas E Wilson

Nonhomologous end joining (NHEJ) is an important DNA double-strand-break (DSB) repair pathway that requires three protein complexes in Saccharomyces cerevisiae: the Ku heterodimer (Yku70-Yku80), MRX (Mre11-Rad50-Xrs2), and DNA ligase IV (Dnl4-Lif1), as well as the ligase-associated protein Nej1. Here we use chromatin immunoprecipitation from yeast to dissect the recruitment and release of these...

2014
Masahiro Terasawa Akira Shinohara Miki Shinohara

Double-strand breaks (DSBs) are one of the severest types of DNA damage. Unrepaired DSBs easily induce cell death and chromosome aberrations. To maintain genomic stability, cells have checkpoint and DSB repair systems to respond to DNA damage throughout most of the cell cycle. The failure of this process often results in apoptosis or genomic instability, such as aneuploidy, deletion, or translo...

2016
Priyanka Venkatesh Irina V. Panyutin Evgenia Remeeva Ronald D. Neumann Igor G. Panyutin Terrence Piva Pamela Lein

Chromatin structure affects the extent of DNA damage and repair. Thus, it has been shown that heterochromatin is more protective against DNA double strand breaks (DSB) formation by ionizing radiation (IR); and that DNA DSB repair may proceed differently in hetero- and euchromatin regions. Human embryonic stem cells (hESC) have a more open chromatin structure than differentiated cells. Here, we ...

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