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Ligase Ⅳ基因突变对小鼠生长及成体神经系统发育的影响
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作者 邱月 汪光明 徐俊 《同济大学学报(医学版)》 CAS 2018年第6期40-45,共6页
目的研究Ligase Ⅳ对小鼠生长及成体神经系统发育的影响。方法记录野生型(WT)和突变型Ligase Ⅳ^(Y288C)纯合子(MU)小鼠的生存情况,绘制小鼠生存曲线;记录小鼠不同生长时期的体质量和脑质量,监测小鼠个体发育和脑发育差异;用Sox2和Nesti... 目的研究Ligase Ⅳ对小鼠生长及成体神经系统发育的影响。方法记录野生型(WT)和突变型Ligase Ⅳ^(Y288C)纯合子(MU)小鼠的生存情况,绘制小鼠生存曲线;记录小鼠不同生长时期的体质量和脑质量,监测小鼠个体发育和脑发育差异;用Sox2和Nestin免疫染色来检测小鼠侧脑室下区(subventricular zone,SVZ)神经干细胞(neural stem cells,NSCs)的数量;用Ki67和Nestin免疫染色来检测小鼠SVZ的NSCs增殖情况;原代分离培养小鼠SVZ的NSCs,用克隆形成实验检测细胞的生长状况。结果 MU小鼠的平均寿命明显低于WT小鼠(P<0. 000 1);MU小鼠的体质量和脑质量在生长的各个时期均明显小于WT小鼠(P<0. 000 1); MU小鼠大脑SVZ的NSCs数量及增殖细胞数均比WT少(P<0. 011 3); MU小鼠NSCs的克隆形成能力低于WT小鼠(P<0. 001)。结论 Ligase Ⅳ突变在小鼠生长及成体神经系统发育的过程中起重要作用。 展开更多
关键词 ligase 基因突变 神经干细胞 侧脑室下区
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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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