نتایج جستجو برای: double strandbreak dsb

تعداد نتایج: 241478  

2013
Seiji Nakagawa Chika Fujiyuki Yuko Okubo Takuya Hotehama

Bone-conducted ultrasound (BCU) is perceived even by the profoundly sensorineural deaf. We have developed a novel hearing-aid using BCU perception (BCU hearing aid: BCUHA) for the profoundly deaf. In the BCUHA, ultrasonic sinusoids of about 30 kHz are amplitudemodulated by speech and presented to the mastoid. Generally, two sounds are perceived: one is a high-pitched tone due to the ultrasonic ...

Journal: :Molecular and cellular biology 2006
Francesca Storici Joyce R Snipe Godwin K Chan Dmitry A Gordenin Michael A Resnick

The repair of chromosomal double-strand breaks (DSBs) is essential to normal cell growth, and homologous recombination is a universal process for DSB repair. We explored DSB repair mechanisms in the yeast Saccharomyces cerevisiae using single-strand oligonucleotides with homology to both sides of a DSB. Oligonucleotide-directed repair occurred exclusively via Rad52- and Rad59-mediated single-st...

2015
Santosh K. Gothwal Neem J. Patel Meaghan M. Colletti Hiroyuki Sasanuma Miki Shinohara Andreas Hochwagen Akira Shinohara

Histone modification is a critical determinant of the frequency and location of meiotic double-strand breaks (DSBs), and thus recombination. Set1-dependent histone H3K4 methylation and Dot1-dependent H3K79 methylation play important roles in this process in budding yeast. Given that RNA polymerase II associated factor 1 complex, Paf1C, promotes both types of methylation, we addressed the role o...

2014
Kelly Gray Sheetal Kumar Nichola Figg James Harrison Lauren Baker John Mercer Trevor Littlewood Martin Bennett

Subject codes: [134] Pathophysiology [137]Cell biology/structural biology [96] Mechanism of atherosclerosis/growth factors [162] Smooth muscle proliferation ABSTRACT Rationale: DNA damage and the DNA damage response (DDR) have been identified in human atherosclerosis, including in vascular smooth muscle cells (VSMCs). However, although double strand breaks (DSBs) are hypothesized to promote pla...

2013
Maria-Elisabetta Serrentino Emmanuel Chaplais Vérane Sommermeyer Valérie Borde

During the first meiotic prophase, programmed DNA double-strand breaks (DSBs) are distributed non randomly at hotspots along chromosomes, to initiate recombination. In all organisms, more DSBs are formed than crossovers (CO), the repair product that creates a physical link between homologs and allows their correct segregation. It is not known whether all DSB hotspots are also CO hotspots or if ...

2013
Xiling Wu Yang Xu Katey Feng Joshua D. Tompkins Chengtao Her

Double-strand breaks (DSBs) constitute the most deleterious form of DNA lesions that can lead to genome alterations and cell death, and the vast majority of DSBs arise pathologically in response to DNA damaging agents such as ionizing radiation (IR) and chemotherapeutic agents. Recent studies have implicated a role for the human MutS homologue hMSH5 in homologous recombination (HR)-mediated DSB...

Journal: :PLoS Biology 2007
Cyril Buhler Valérie Borde Michael Lichten

DNA double-strand breaks (DSBs), which are formed by the Spo11 protein, initiate meiotic recombination. Previous DSB-mapping studies have used rad50S or sae2Delta mutants, which are defective in break processing, to accumulate Spo11-linked DSBs, and report large (> or = 50 kb) "DSB-hot" regions that are separated by "DSB-cold" domains of similar size. Substantial recombination occurs in some DS...

2015
Ju-Ying Tsai Fang-Hsin Chen Tsung-Yu Hsieh Ya-Yun Hsiao

Clustered DNA damage other than double-strand breaks (DSBs) can be detrimental to cells and can lead to mutagenesis or cell death. In addition to DSBs induced by ionizing radiation, misrepair of non-DSB clustered damage contributes extra DSBs converted from DNA misrepair via pathways for base excision repair and nucleotide excision repair. This study aimed to quantify the relative biological ef...

Journal: :Clinical cancer research : an official journal of the American Association for Cancer Research 2006
Christopher J Lord Michelle D Garrett Alan Ashworth

DNA repair pathways are crucial for the maintenance of genome integrity. The pathway that repairs DNA double-strand breaks (DSB) has components involved in both signaling and repairing DNA damage. Impairing DSB repair using specific inhibitors of signaling or repair might, in principle, sensitize tumor cells to particular DNA-damaging agents. Moreover, the existence of specific defects in DNA r...

2012
James A.L. Brown John K. Eykelenboom Noel F. Lowndes

Under normal conditions histone H2AX is constitutively phosphorylated on tyrosine (Y) 142 by Williams-Beuren syndrome transcription factor kinase (WSTF). Following DNA double strand breaks (DSB), Y142 is de-phosphorylated and serine (S) 139 is phosphorylated. Here we explored DSB-dependent cross talk between H2AX residues S139 and Y142. H2axY142A mutation resulted in increased sensitivity to io...

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