نتایج جستجو برای: double strandbreak dsb

تعداد نتایج: 241478  

Journal: :Cell 2002
Ana Peciña Kathleen N. Smith Christine Mézard Hajime Murakami Kunihiro Ohta Alain Nicolas

Meiotic recombination in Saccharomyces cerevisiae is initiated by programmed DNA double-strand breaks (DSBs), a process that requires the Spo11 protein. DSBs usually occur in intergenic regions that display open chromatin accessibility, but other determinants that control their frequencies and non-random chromosomal distribution remain obscure. We report that a Spo11 construct bearing the Gal4 ...

Journal: :Molecular cell 2008
Aaron A Goodarzi Angela T Noon Dorothee Deckbar Yael Ziv Yosef Shiloh Markus Löbrich Penny A Jeggo

Ataxia Telangiectasia Mutated (ATM) signaling is essential for the repair of a subset of DNA double-strand breaks (DSBs); however, its precise role is unclear. Here, we show that < or =25% of DSBs require ATM signaling for repair, and this percentage correlates with increased chromatin but not damage complexity. Importantly, we demonstrate that heterochromatic DSBs are generally repaired more s...

Journal: :Cell 2016
Julian Lange Shintaro Yamada Sam E. Tischfield Jing Pan Seoyoung Kim Xuan Zhu Nicholas D. Socci Maria Jasin Scott Keeney

Heritability and genome stability are shaped by meiotic recombination, which is initiated via hundreds of DNA double-strand breaks (DSBs). The distribution of DSBs throughout the genome is not random, but mechanisms molding this landscape remain poorly understood. Here, we exploit genome-wide maps of mouse DSBs at unprecedented nucleotide resolution to uncover previously invisible spatial featu...

Journal: :Nucleic acids research 1998
G Ira E Svetlova J Filipski

Meiotic recombination in the yeast Saccharomyces cerevisiae is initiated by double-strand breaks (DSB) in chromosomal DNA. These DSB, which can be mapped in the rad 50S mutant yeast strain, are caused by a topoisomerase II-like enzyme, the protein Spo11. Evidence suggests that this protein is located in the axial element of the meiotic chromosome which implies that the DSB are located in these ...

Journal: :Cytogenetic and genome research 2004
P Pfeiffer W Goedecke S Kuhfittig-Kulle G Obe

DNA double-strand breaks (DSB) are considered the critical primary lesion in the formation of chromosomal aberrations (CA). DSB occur spontaneously during the cell cycle and are induced by a variety of exogenous agents such as ionising radiation. To combat this potentially lethal damage, two related repair pathways, namely homologous recombination (HR) and non-homologous DNA end joining (NHEJ),...

Journal: :DNA repair 2011
Wataru Nakai Jim Westmoreland Elaine Yeh Kerry Bloom Michael A Resnick

The continuity of duplex DNA is generally considered a prerequisite for chromosome continuity. However, as previously shown in yeast as well as human cells, the introduction of a double-strand break (DSB) does not generate a chromosome break (CRB) in yeast or human cells. The transition from DSB to CRB was found to be under limited control by the tethering function of the RAD50/MRE11/XRS2 (MRX)...

Journal: :Cancer research 2002
Gregory Langland James Elliott Yuling Li Jenette Creaney Kathleen Dixon Joanna Groden

Experiments with the supF20 mutagenesis system demonstrate that extracts from Bloom's syndrome (BS) cells are unable to use microhomology elements within the supF20 gene to restore supF function after the induction of a double-strand break (DSB). Additional experiments with the pUC18 mutagenesis system demonstrate that although the efficiency and fidelity of DSB repair by BS extracts are compar...

2017
Yongming Li Zongzhu Li Ruiqin Wu Zhiyong Han Wenge Zhu

Homologous recombination (HR) is a major mechanism to repair DNA double-strand breaks (DSBs). Although tumor suppressor CtIP is critical for DSB end resection, a key initial event of HR repair, the mechanism regulating the recruitment of CtIP to DSB sites remains largely unknown. Here, we show that acidic nucleoplasmic DNA-binding protein 1 (And-1) forms complexes with CtIP as well as other rep...

Journal: :Cell reports 2017
Waaqo Daddacha Allyson E Koyen Amanda J Bastien PamelaSara E Head Vishal R Dhere Geraldine N Nabeta Erin C Connolly Erica Werner Matthew Z Madden Michele B Daly Elizabeth V Minten Donna R Whelan Ashley J Schlafstein Hui Zhang Roopesh Anand Christine Doronio Allison E Withers Caitlin Shepard Ranjini K Sundaram Xingming Deng William S Dynan Ya Wang Ranjit S Bindra Petr Cejka Eli Rothenberg Paul W Doetsch Baek Kim David S Yu

DNA double-strand break (DSB) repair by homologous recombination (HR) is initiated by CtIP/MRN-mediated DNA end resection to maintain genome integrity. SAMHD1 is a dNTP triphosphohydrolase, which restricts HIV-1 infection, and mutations are associated with Aicardi-Goutières syndrome and cancer. We show that SAMHD1 has a dNTPase-independent function in promoting DNA end resection to facilitate D...

Journal: :ACS chemical biology 2018
John C Rose Jason J Stephany Cindy T Wei Douglas M Fowler Dustin J Maly

We recently reported two novel tools for precisely controlling and quantifying Cas9 activity: a chemically inducible Cas9 variant (ciCas9) that can be rapidly activated by small molecules and a ddPCR assay for time-resolved measurement of DNA double strand breaks (DSB-ddPCR). Here, we further demonstrate the potential of ciCas9 to function as a tunable rheostat for Cas9 function. We show that a...

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