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The endless tale of non-homologous end-joining 被引量:16
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作者 Eric Weterings David J Chen 《Cell Research》 SCIE CAS CSCD 2008年第1期114-124,共11页
DNA double-strand breaks (DSBs) are introduced in cells by ionizing radiation and reactive oxygen species. In addition, they are commonly generated during V(D)J recombination, an essential aspect of the developing... DNA double-strand breaks (DSBs) are introduced in cells by ionizing radiation and reactive oxygen species. In addition, they are commonly generated during V(D)J recombination, an essential aspect of the developing immune system. Failure to effectively repair these DSBs can result in chromosome breakage, cell death, onset of cancer, and defects in the immune system of higher vertebrates. Fortunately, all mammalian cells possess two enzymatic pathways that mediate the repair of DSBs: homologous recombination and non-homologous end-joining (NHEJ). The NHEJ process utilizes enzymes that capture both ends of the broken DNA molecule, bring them together in a synaptic DNA-protein complex, and finally repair the DNA break. In this review, all the known enzymes that play a role in the NHEJ process are discussed and a working model for the co-operation of these enzymes during DSB repair is presented. 展开更多
关键词 DNA-PK Ku70/80 XRCC4 Ligase IV ARTEMIS XLF cernunnos DSB NHEJ ATM non-homologous end-joining DNA double-strand break V(D)J recombination
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Flexibility in the order of action and in the enzymology of the nuclease, polymerases, and ligase of vertebrate non-homologous DNA end joining: relevance to cancer, aging, and the immune system 被引量:5
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作者 Michael R Lieber Haihui Lu +1 位作者 Jiafeng Gu Klaus Schwarz 《Cell Research》 SCIE CAS CSCD 2008年第1期125-133,共9页
Nonhomologous DNA end joining (NHEJ) is the primary pathway for repair of double-strand DNA breaks in human cells and in multicellular eukaryotes. The causes of double-strand breaks often fragment the DNA at the sit... Nonhomologous DNA end joining (NHEJ) is the primary pathway for repair of double-strand DNA breaks in human cells and in multicellular eukaryotes. The causes of double-strand breaks often fragment the DNA at the site of damage, resulting in the loss of information there. NHEJ does not restore the lost information and may resect additional nucleotides during the repair process. The ability to repair a wide range of overhang and damage configurations reflects the flexibility of the nuclease, polymerases, and ligase of NHEJ. The flexibility of the individual components also explains the large number of ways in which NHEJ can repair any given pair of DNA ends. The loss of information locally at sites of NHEJ repair may contribute to cancer and aging, but the action by NHEJ ensures that entire segments of chromosomes are not lost. 展开更多
关键词 nonhomologous DNA end joining (NHEJ) Ku DNA-PKcs Artemis cernunnos/XLE ligase XRCC4 polymerase μ polymerase λ
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伴放射敏感的联合免疫缺陷病3例临床分析 被引量:4
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作者 贺建新 吴润晖 +6 位作者 徐樨巍 张永红 马晓莉 徐保平 刘秀云 申昆玲 江载芳 《中国实用儿科杂志》 CSCD 北大核心 2016年第4期305-307,共3页
目的分析伴放射敏感的联合免疫缺陷病(RS-CID)患儿临床、免疫及基因突变特点。方法选取2013-09-05—2015-06-03首都医科大学附属北京儿童医院住院的3例RS-CID患儿,分析其临床表现,血清免疫球蛋白水平,T、B淋巴细胞亚群所占比例及基因突... 目的分析伴放射敏感的联合免疫缺陷病(RS-CID)患儿临床、免疫及基因突变特点。方法选取2013-09-05—2015-06-03首都医科大学附属北京儿童医院住院的3例RS-CID患儿,分析其临床表现,血清免疫球蛋白水平,T、B淋巴细胞亚群所占比例及基因突变特点。结果 3例中男2例,女1例;均为学龄期儿童。病例1表现为反复腹泻和肺炎,病后有生长迟缓、中度营养不良;病例2表现为反复肺炎、全血细胞减少、淋巴瘤;病例3表现为反复感染、全血细胞减少、小头畸形、生长迟缓。病例1和病例2均表现为CD4+T和B淋巴细胞比例明显降低,病例3表现为B淋巴细胞比例明显降低。病例1和病例3有明显淋巴细胞减少。经基因突变分析明确诊断病例1和病例2为LIG4基因突变;病例3为Cernunnos基因突变。结论反复感染的年长儿,合并自身免疫和(或)淋巴瘤和(或)小头及生长迟缓,B细胞和(或)CD4+T细胞亚型明显降低,应考虑RS-CID的可能。 展开更多
关键词 联合免疫缺陷病 放射敏感 LIG4 cernunnos 自身免疫 淋巴瘤
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