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携带HR-GFP报告基因的DNA损伤同源重组修复检测系统的建立及初步应用
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作者 邓昭敏 李莎 +5 位作者 李明远 王欢 任来峰 郭连娣 刘聪 丁娜娜 《西部医学》 2013年第12期1770-1774,共5页
目的建立DNA损伤同源重组修复检测系统(Ⅰ-Sce I-HR),应用该系统制备DNA双链断裂(DSB)的人骨肉瘤细胞(U2OS)模型,探索细胞DNA损伤后的修复特性奠定基础。方法通过分子克隆构建携带Ⅰ-Sce I归位内切酶识别序列的真核表达载体pcDNA3-HR-G... 目的建立DNA损伤同源重组修复检测系统(Ⅰ-Sce I-HR),应用该系统制备DNA双链断裂(DSB)的人骨肉瘤细胞(U2OS)模型,探索细胞DNA损伤后的修复特性奠定基础。方法通过分子克隆构建携带Ⅰ-Sce I归位内切酶识别序列的真核表达载体pcDNA3-HR-GFP,将该质粒转染入U2OS细胞中,经G418稳定筛选。随后分别瞬时转染入携带归位内切酶Ⅰ-Sce I的表达质粒pCBASCEI,以及体外经Ⅰ-Sce I线性化pcDNA3-HR-GFP。48小时后用免疫荧光方法检测DNA双链损伤效应分子-γ-H2AX,同时观察EGFP荧光信号;72小时后用Western blot检测报告蛋白EGFP的表达,评估DNA双链断裂后同源重组修复情况。结果酶切鉴定和测序证实pcDNA3-HR-GFP真核表达载体构建成功;Ⅰ-Sce I-HR系统引入U2OS细胞中后,γ-H2AX表达明显上调,荧光显微镜和Western blot均显示EGFP表达。结论 DSB细胞同源重组修复模型构建成功,Ⅰ-Sce I-HR系统能够成功地诱导U2OS细胞株产生DSB,并出现同源重组修复,为进一步研究DNA同源重组信号传导提供了有效的研究工具。 展开更多
关键词 同源重组 DNA双链断裂 Ⅰ-Sce i-hr
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Development of Novel Visual-Plus Quantitative Analysis Systems for Studying DNA Double-Strand Break Repairs in Zebrafish 被引量:3
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作者 Jingang Liu Lu Gong +3 位作者 Changqing Chang Cong Liu Jinrong Peng Jun Chen 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2012年第9期489-502,共14页
The use of reporter systems to analyze DNA double-strand break(DSB) repairs,based on the enhanced green fluorescent protein (EGFP) and meganuclease such as I-Sce I,is usually carried out with cell lines.In this st... The use of reporter systems to analyze DNA double-strand break(DSB) repairs,based on the enhanced green fluorescent protein (EGFP) and meganuclease such as I-Sce I,is usually carried out with cell lines.In this study,we developed three visual-plus quantitative assay systems for homologous recombination(HR),non-homologous end joining(NHEJ) and single-strand annealing(SSA) DSB repair pathways at the organismal level in zebrafish embryos.To initiate DNA DSB repair,we used two I-Sce I recognition sites in opposite orientation rather than the usual single site.The NHEJ,HR and SSA repair pathways were separately triggered by the injection of three corresponding I-Sce I-cut constructions,and the repair of DNA lesion caused by l-Sce I could be tracked by EGFP expression in the embryos.Apart from monitoring the intensity of green fluorescence,the repair frequencies could also be precisely measured by quantitative real-time polymerase chain reaction(qPCR).Analysis of DNA sequences at the DSB sites showed that NHEJ was predominant among these three repair pathways in zebrafish embryos.Furthermore,while HR and SSA reporter systems could be effectively decreased by the knockdown of rad51 and rad52,respectively,NHEJ could only be impaired by the knockdown of ligaseIV(lig4) when the NHEJ construct was cut by I-Sce I in vivo.More interestingly,blocking NHEJ with lig4-MO increased the frequency of HR,but decreased the frequency of SSA.Our studies demonstrate that the major mechanisms used to repair DNA DSBs are conserved from zebrafish to mammal,and zebrafish provides an excellent model for studying and manipulating DNA DSB repair at the organismal level. 展开更多
关键词 DNA DSB repair NHEJ HR SSA i-sce I Zebrafish
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