نتایج جستجو برای: double strandbreak dsb

تعداد نتایج: 241478  

2013
Bilge Argunhan Sarah Farmer Wing-Kit Leung Yaroslav Terentyev Neil Humphryes Tomomi Tsubouchi Hiroshi Toyoizumi Hideo Tsubouchi

Meiotic recombination plays an essential role in the proper segregation of chromosomes at meiosis I in many sexually reproducing organisms. Meiotic recombination is initiated by the scheduled formation of genome-wide DNA double-strand breaks (DSBs). The timing of DSB formation is strictly controlled because unscheduled DSB formation is detrimental to genome integrity. Here, we investigated the ...

2012
Sarah Farmer Eun-Jin Erica Hong Wing-Kit Leung Bilge Argunhan Yaroslav Terentyev Neil Humphryes Hiroshi Toyoizumi Hideo Tsubouchi

Budding yeast Pch2 protein is a widely conserved meiosis-specific protein whose role is implicated in the control of formation and displacement of meiotic crossover events. In contrast to previous studies where the function of Pch2 was implicated in the steps after meiotic double-strand breaks (DSBs) are formed, we present evidence that Pch2 is involved in meiotic DSB formation, the initiation ...

2007
Hideaki Ogiwara Takashi Ohuchi Ayako Ui Shusuke Tada Takemi Enomoto Masayuki Seki

The efficient repair of double-strand breaks (DSBs) is crucial in maintaining genomic integrity. Sister chromatid cohesion is important for not only faithful chromosome segregation but also for proper DSB repair. During DSB repair, the Smc1-Smc3 cohesin complex is loaded onto chromatin around the DSB to support recombination-mediated DSB repair. In this study, we investigated whether Ctf18, a f...

Journal: :Cell 2012
Wei Wei Zhaoqing Ba Min Gao Yang Wu Yanting Ma Simon Amiard Charles I. White Jannie Michaela Rendtlew Danielsen Yun-Gui Yang Yijun Qi

Eukaryotes have evolved complex mechanisms to repair DNA double-strand breaks (DSBs) through coordinated actions of protein sensors, transducers, and effectors. Here we show that ∼21-nucleotide small RNAs are produced from the sequences in the vicinity of DSB sites in Arabidopsis and in human cells. We refer to these as diRNAs for DSB-induced small RNAs. In Arabidopsis, the biogenesis of diRNAs...

Journal: :Genetics 2006
Richard D McCulloch Mark D Baker

The double-strand break repair (DSBR) model is currently accepted as the paradigm for acts of double-strand break (DSB) repair that lead to crossing over between homologous sequences. The DSBR model predicts that asymmetric heteroduplex DNA (hDNA) will form on both sides of the DSB (two-sided events; 5:3/5:3 segregation). In contrast, in yeast and mammalian cells, a considerable fraction of rec...

Journal: :Genetics 2003
Jason D Merker Margaret Dominska Thomas D Petes

The double-strand break repair (DSBR) model of recombination predicts that heteroduplexes will be formed in regions that flank the double-strand break (DSB) site and that the resulting intermediate is resolved to generate either crossovers or noncrossovers for flanking markers. Previous studies in Saccharomyces cerevisiae, however, failed to detect heteroduplexes on both sides of the DSB site. ...

Journal: :Journal of cell science 2015
Rajeev Kumar Norbert Ghyselinck Kei-ichiro Ishiguro Yoshinori Watanabe Anna Kouznetsova Christer Höög Edward Strong John Schimenti Katrin Daniel Attila Toth Bernard de Massy

The formation of programmed DNA double-strand breaks (DSBs) at the beginning of meiotic prophase marks the initiation of meiotic recombination. Meiotic DSB formation is catalyzed by SPO11 and their repair takes place on meiotic chromosome axes. The evolutionarily conserved MEI4 protein is required for meiotic DSB formation and is localized on chromosome axes. Here, we show that HORMAD1, one of ...

2013
Ericca L. Stamper Stacia E. Rodenbusch Simona Rosu Julie Ahringer Anne M. Villeneuve Abby F. Dernburg

Meiotic recombination, an essential aspect of sexual reproduction, is initiated by programmed DNA double-strand breaks (DSBs). DSBs are catalyzed by the widely-conserved Spo11 enzyme; however, the activity of Spo11 is regulated by additional factors that are poorly conserved through evolution. To expand our understanding of meiotic regulation, we have characterized a novel gene, dsb-1, that is ...

Journal: :Journal of radiation research 2008
Junya Kobayashi Kuniyoshi Iwabuchi Kiyoshi Miyagawa Eiichiro Sonoda Keiji Suzuki Minoru Takata Hiroshi Tauchi

DNA double strand break (DSB) is one of the most critical types of damage which is induced by ionizing radiation. In this review, we summarize current progress in investigations on the function of DSB repair-related proteins. We focused on recent findings in the analysis of the function of proteins such as 53BP1, histone H2AX, Mus81-Eme1, Fanc complex, and UBC13, which are found to be related t...

Journal: :iranian journal of radiation research 0
m. salimi department of medical genetics, faculty of medical sciences, tarbiat modares university, tehran, iran h. mozdarani department of medical genetics, faculty of medical sciences, tarbiat modares university, tehran, iran

background: h2ax is a histone variant that is systematically found and ubiquitously distributed throughout the genome. dna double-strand breaks (dsbs) induce phosphorylation of h2ax at serine 139 (γh2ax), an immunocytochemical assay with antibodies recognizing γh2ax has become the gold standard for the detection of dsbs. the importance of this assay to investigate different individual responses...

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