نتایج جستجو برای: dna dsb

تعداد نتایج: 507900  

Journal: :Mutagenesis 2005
Elizabeth Bilsland Jessica A Downs

DNA double-strand breaks (DSBs) are, arguably, the most deleterious form of DNA damage. An increasing body of evidence points to the inaccurate or inefficient repair of DSBs as a key step in tumorigenesis. Therefore, it is of great importance to understand the processes by which DSBs are detected and repaired. Clearly, these events must take place in the context of chromatin in vivo, and recent...

Journal: :Molecular cancer research : MCR 2005
Junran Zhang Simon N Powell

The tumor suppressor gene BRCA1 was cloned in 1994 based on its linkage to early-onset breast and ovarian cancer. Although the BRCA1 protein has been implicated in multiple cellular functions, the precise mechanism that determines its tumor suppressor activity is not defined. Currently, the emerging picture is that BRCA1 plays an important role in maintaining genomic integrity by protecting cel...

2011
LIANG ZHUANG YANG CAO HUIHUA XIONG QINGLEI GAO ZHE CAO FEI LIU HONG QIU SHIYING YU XIAOYUAN HUANG

DNA-dependent protein kinase (DNA-PK), including Ku80, Ku70 and DNA-PK catalytic subunit (DNA-PKcs), is the key protein in non-homologous end-joining (NHEJ) after DNA double-strand breaks (DSBs) appear. In this study, small hairpin interfering RNAs (siRNAs) targeting Ku80 and DNAPKcs were used both individually and in combination, to explore the effects of these DSB proteins on HeLa cell functi...

2016
Takayo Fukuda Tomoko Tsuruga Takako Kuroda Jun Takeuchi Wenwen Wu Tomohiko Ohta

Chromatin compaction represents a barrier for the repair of DNA double-strand breaks (DSBs). However, heterochromatin components are also required for DSB repair by homologous recombination. The BARD1/HP1 interaction, required for the retention of BRCA1, CTIP, and RAD51 at DSB sites, may play a critical role in the crosstalk between chromatin compaction and DSB repair.

2017
Khalid Hilmi Maïka Jangal Maud Marques Tiejun Zhao Amine Saad Chenxi Zhang Vincent M Luo Alasdair Syme Carlis Rejon Zhenbao Yu Asiev Krum Marc R Fabian Stéphane Richard Moulay Alaoui-Jamali Alexander Orthwein Luke McCaffrey Michael Witcher

The repair of DNA double-strand breaks (DSBs) is mediated via two major pathways, nonhomologous end joining (NHEJ) and homologous recombination (HR) repair. DSB repair is vital for cell survival, genome stability, and tumor suppression. In contrast to NHEJ, HR relies on extensive homology and templated DNA synthesis to restore the sequence surrounding the break site. We report a new role for th...

Journal: :Carcinogenesis 2014
Raghavendra A Shamanna Dharmendra Kumar Singh Huiming Lu Gladys Mirey Guido Keijzers Bernard Salles Deborah L Croteau Vilhelm A Bohr

RECQL4, a member of the RecQ helicase family, is a multifunctional participant in DNA metabolism. RECQL4 protein participates in several functions both in the nucleus and in the cytoplasm of the cell, and mutations in human RECQL4 are associated with three genetic disorders: Rothmund-Thomson, RAPADILINO and Baller-Gerold syndromes. We previously reported that RECQL4 is recruited to laser-induce...

Journal: :Journal of radiation research 2009
Naoya Shikazono Miho Noguchi Kentaro Fujii Ayumi Urushibara Akinari Yokoya

After living cells are exposed to ionizing radiation, a variety of chemical modifications of DNA are induced either directly by ionization of DNA or indirectly through interactions with water-derived radicals. The DNA lesions include single strand breaks (SSB), base lesions, sugar damage, and apurinic/apyrimidinic sites (AP sites). Clustered DNA damage, which is defined as two or more of such l...

2013
Tomoichiro Miyoshi Masaru Ito Kunihiro Ohta

Sexual reproduction involves diversification of genetic information in successive generations. Meiotic recombination, which substantially contributes to the increase in genetic diversity, is initiated by programmed DNA double-strand breaks (DSBs) catalyzed by the evolutionarily conserved Spo11 protein. Spo11 requires additional partner proteins for its DNA cleavage reaction. DSBs are preferenti...

Journal: :Current Biology 2007
Hannah G. Blitzblau George W. Bell Joseph Rodriguez Stephen P. Bell Andreas Hochwagen

BACKGROUND Every chromosome requires at least one crossover to be faithfully segregated during meiosis. At least two levels of regulation govern crossover distribution: where the initiating DNA double-strand breaks (DSBs) occur and whether those DSBs are repaired as crossovers. RESULTS We mapped meiotic DSBs in budding yeast by identifying sites of DSB-associated single-stranded DNA (ssDNA) a...

2013
Elin Enervald Emma Lindgren Yuki Katou Katsuhiko Shirahige Lena Ström

Genome integrity depends on correct chromosome segregation, which in turn relies on cohesion between sister chromatids from S phase until anaphase. S phase cohesion, together with DNA double-strand break (DSB) recruitment of cohesin and formation of damage-induced (DI) cohesion, has previously been shown to be required also for efficient postreplicative DSB repair. The budding yeast acetyltrans...

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