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Boosting genome editing in plants with single transcript unit surrogate reporter systems
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作者 Xu Tang Qiurong Ren +7 位作者 Xiaodan Yan Rui Zhang Li Liu Qinqin Han Xuelian Zheng Yiping Qi Hongyuan Song Yong Zhang 《Plant Communications》 SCIE CSCD 2024年第6期32-43,共12页
CRISPR-Cas-based genome editing holds immense promise for advancing plant genomics and crop enhancement.However,the challenge of low editing activity complicates the identification of editing events.In this study,we i... CRISPR-Cas-based genome editing holds immense promise for advancing plant genomics and crop enhancement.However,the challenge of low editing activity complicates the identification of editing events.In this study,we introduce multiple single transcript unit surrogate reporter(STU-SR)systems to enhance the selection of genome-edited plants.These systems use the same single guide RNAs designed for endogenous genes to edit reporter genes,establishing a direct link between reporter gene editing activity and that of endogenous genes.Various strategies are used to restore functional reporter genes after genome editing,including efficient single-strand annealing(SSA)for homologous recombination in STUSR-SSA systems.STU-SR-base editor systems leverage base editing to reinstate the start codon,enriching C-to-T and A-to-G base editing events.Our results showcase the effectiveness of these STU-SR systems in enhancing genome editing events in the monocot rice,encompassing Cas9 nuclease-based targeted mutagenesis,cytosine base editing,and adenine base editing.The systems exhibit compatibility with Cas9 variants,such as the PAM-less SpRY,and are shown to boost genome editing in Brassica oleracea,a dicot vegetable crop.In summary,we have developed highly efficient and versatile STU-SR systems for enrichment of genome-edited plants. 展开更多
关键词 CRISPR-Cas9 single transcript unit STU surrogate reporter SR single strand annealing SSA cyto-sine base editing adenine base editing
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联合应用自杀基因/前药系统和放疗对人骨肉瘤细胞的杀伤作用 被引量:3
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作者 乔慧 丘钜世 +1 位作者 朱全胜 王晋 《中华骨科杂志》 CAS CSCD 北大核心 2002年第7期427-431,共5页
目的观察联合应用自杀基因/前药系统和放疗对人骨肉瘤细胞的杀伤作用。方法以大肠杆菌JM107为模板,PCR扩增出CD基因,测序并将其插入真核表达质粒pEGFP-C1中,构建EGFPCD融合基因。用DOTAP将分别含有CD和HSV-TK的两种质粒pEGFP-CD和tgCMVH... 目的观察联合应用自杀基因/前药系统和放疗对人骨肉瘤细胞的杀伤作用。方法以大肠杆菌JM107为模板,PCR扩增出CD基因,测序并将其插入真核表达质粒pEGFP-C1中,构建EGFPCD融合基因。用DOTAP将分别含有CD和HSV-TK的两种质粒pEGFP-CD和tgCMVHyTK同时导入人骨肉瘤细胞SAOS-2,经G418和潮霉素B共同筛选后,于荧光显微镜下观察阳性克隆细胞株SAOS-2CDTK。运用PCR和Northernblot方法检测SAOS-2CDTK细胞中的CD和HSV-TK基因及其表达。用MTT法检测单独或联合应用两种前药(GCV、5-FC)对SAOS-2CDTK细胞的存活率、“旁观者效应”以及细胞对放疗敏感性的影响。结果测序图和酶切鉴定证明CD基因的克隆和含EGFPCD融合基因的重组真核表达质粒pEGFP-CD的构建是成功的。荧光显微镜观察SAOS-2CDTK细胞胞质呈现绿色荧光。PCR和Northernblot分析均表明SAOS-2CDTK细胞中含有CD和HSV-TK两个基因,并获得mRNA水平的表达。与单一前药相比,联合应用两种前药时,SAOS-2CDTK细胞的存活率下降,“旁观者效应”及细胞对放疗的敏感性增强。结论联合应用两种自杀基因/前药系统和放疗可增强细胞毒作用,为骨肉瘤的治疗提供了一条新的有效途径。 展开更多
关键词 骨肉瘤 基因疗法 放射疗法 胞嘧啶 脱氨酶类 胸苷激酶
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