نتایج جستجو برای: xrcc4

تعداد نتایج: 389  

Journal: :Radiation research 2008
Francis A Cucinotta Janice M Pluth Jennifer A Anderson Jane V Harper Peter O'Neill

We developed a biochemical kinetics approach to describe the repair of double-strand breaks (DSBs) produced by low-LET radiation by modeling molecular events associated with non-homologous end joining (NHEJ). A system of coupled nonlinear ordinary differential equations describes the induction of DSBs and activation pathways for major NHEJ components including Ku70/80, DNA-PKcs, and the ligase ...

2016

Background: Differentiated thyroid carcinoma (DTC) is the most prevalent thyroid neoplasm which includes papillary and follicular cell carcinoma. Exposure to ionizing radiation is a predisposing factor for developing DTC. Non Homologous End Joining (NHEJ) DNA repair pathway is important one among DNA repair pathways which rejoins ends of broken DNA strands. XRCC4 gene is one of the most importa...

Journal: :International journal of clinical and experimental pathology 2014
Jin-Guang Yao Xiao-Ying Huang Xi-Dai Long

Aflatoxin B1 (AFB1) is an important environmental carcinogen and can induce DNA damage and involve in the carcinogenesis of hepatocellular carcinoma (HCC). The deficiency of DNA repair capacity related to the polymorphisms of DNA repair genes might play a central role in the process of HCC tumorigenesis. However, the interaction of DNA repair gene polymorphisms and AFB1 in the risk of hepatocel...

Journal: :Nucleic acids research 2004
Wesley D Block Yaping Yu Dennis Merkle Jessica L Gifford Qi Ding Katheryn Meek Susan P Lees-Miller

Non-homologous end joining (NHEJ) is one of the primary pathways for the repair of ionizing radiation (IR)-induced DNA double-strand breaks (DSBs) in mammalian cells. Proteins required for NHEJ include the catalytic subunit of the DNA-dependent protein kinase (DNA-PKcs), Ku, XRCC4 and DNA ligase IV. Current models predict that DNA-PKcs, Ku, XRCC4 and DNA ligase IV assemble at DSBs and that the ...

Journal: :Cancer research 2002
Qing Zhong Thomas G Boyer Phang-Lang Chen Wen-Hwa Lee

BRCA1 ensures genomic stability, at least in part, through a functional role in DNA damage repair. BRCA1 interacts with the Rad50/Mre11/Nbs1 complex that occupies a central role in DNA double-strand break repair mediated by homologous recombination and nonhomologous end joining (NHEJ). NHEJ can be catalyzed by mammalian whole cell extract in a reaction dependent upon DNA ligase IV, Xrcc4, Ku70,...

Journal: :Journal of cell science 2004
Alexander Rapp Karl Otto Greulich

After induction of DNA double-strand breaks (DSB) two repair systems, the error-prone 'nonhomologous end joining' (NHEJ) and the more accurate 'homologous recombination repair' (HRR) can compete for the same individual DSB site. In the human keratinocyte cell line, HaCaT, we have tested the spatial co-localisation and the temporal sequence of events. We used UV-A (365 nm) as a damaging agent, w...

2007
Gernot Herrmann Sanja Kais Jan Hoffbauer Kijwasch Shah-Hosseini Nicole Brüggenolte Heiko Schober Margaret Fäsi Primo Schär

The ligation of DNA double-strand breaks in the process of non-homologous end-joining (NHEJ) is accomplished by a heterodimeric enzyme complex consisting of DNA ligase IV and an associated non-catalytic factor. This DNA ligase also accounts for the fatal joining of unprotected telomere ends. Hence, its activity must be tightly controlled. Here, we describe interactions of the DNA ligase IV-asso...

2018
Raquel Gago‐Fuentes Mengtan Xing Siri Sæterstad Antonio Sarno Alisa Dewan Carole Beck Stefano Bradamante Magnar Bjørås Valentyn Oksenych

DNA repair consists of several cellular pathways which recognize and repair damaged DNA. The classical nonhomologous DNA end-joining (NHEJ) pathway repairs double-strand breaks in DNA. It is required for maturation of both B and T lymphocytes by supporting V(D)J recombination as well as B-cell differentiation during class switch recombination (CSR). Inactivation of NHEJ factors Ku70, Ku80, XRCC...

2012
Emmanuele Crespan Tibor Czabany Giovanni Maga Ulrich Hübscher

'Classical' non-homologous end joining (NHEJ), dependent on the Ku70/80 and the DNA ligase IV/XRCC4 complexes, is essential for the repair of DNA double-strand breaks. Eukaryotic cells possess also an alternative microhomology-mediated end-joining (MMEJ) mechanism, which is independent from Ku and DNA ligase 4/XRCC4. The components of the MMEJ machinery are still largely unknown. Family X DNA p...

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