The fidelity of the ligation step determines how ends are resolved during nonhomologous end joining
出版年份 2014 全文链接
标题
The fidelity of the ligation step determines how ends are resolved during nonhomologous end joining
作者
关键词
-
出版物
Nature Communications
Volume 5, Issue 1, Pages -
出版商
Springer Nature
发表日期
2014-07-03
DOI
10.1038/ncomms5286
参考文献
相关参考文献
注意:仅列出部分参考文献,下载原文获取全部文献信息。- Nonhomologous end joining: A good solution for bad ends
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- Is Non-Homologous End-Joining Really an Inherently Error-Prone Process?
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- A noncatalytic function of the ligation complex during nonhomologous end joining
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- Structure of the Catalytic Region of DNA Ligase IV in Complex with an Artemis Fragment Sheds Light on Double-Strand Break Repair
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- Saccharomyces cerevisiae DNA Ligase IV Supports Imprecise End Joining Independently of Its Catalytic Activity
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- Artemis C-terminal region facilitates V(D)J recombination through its interactions with DNA Ligase IV and DNA-PKcs
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- Human LIGIV is synthetically lethal with the loss of Rad54B-dependent recombination and is required for certain chromosome fusion events induced by telomere dysfunction
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- (2010) J Jefferson P Perry et al. CURRENT OPINION IN STRUCTURAL BIOLOGY
- DNA-PKcs regulates a single-stranded DNA endonuclease activity of Artemis
- (2010) Jiafeng Gu et al. DNA REPAIR
- Ku is a 5′-dRP/AP lyase that excises nucleotide damage near broken ends
- (2010) Steven A. Roberts et al. NATURE
- Base Damage Immediately Upstream from Double-Strand Break Ends is a More Severe Impediment to Nonhomologous End Joining than Blocked 3′-Termini
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- XLF Regulates Filament Architecture of the XRCC4·Ligase IV Complex
- (2010) Michal Hammel et al. STRUCTURE
- Interplay of two major repair pathways in the processing of complex double-strand DNA breaks
- (2008) Tracey A. Dobbs et al. DNA REPAIR
- Two DNA-binding and Nick Recognition Modules in Human DNA Ligase III
- (2008) Elizabeth Cotner-Gohara et al. JOURNAL OF BIOLOGICAL CHEMISTRY
- Coordinate 5′ and 3′ endonucleolytic trimming of terminally blocked blunt DNA double-strand break ends by Artemis nuclease and DNA-dependent protein kinase
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- Tolerance for 8-oxoguanine but not thymine glycol in alignment-based gap filling of partially complementary double-strand break ends by DNA polymerase λ in human nuclear extracts
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- MMEJ repair of double-strand breaks (director’s cut): deleted sequences and alternative endings
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