Reporter genes are widely applied in biotechnology and biomedical research owning to their easy observation and lack of toxicity. Taking advantage of the reporter genes in conjunction with imaging technologies, a larg...Reporter genes are widely applied in biotechnology and biomedical research owning to their easy observation and lack of toxicity. Taking advantage of the reporter genes in conjunction with imaging technologies, a large number of reporter mouse models have been generated. Reporter mouse models provide systems that enable the studies of live cell imaging, cell lineage tracing, immunological research and cancers etc. in vivo. In this review, we describe the types of different reporter genes and reporter mouse models including, random reporter strains, Cre reporter strains and ROSA26 reporter strains. Collectively, these reporter mouse models have broadened scientific inquires and provided potential strategies for generation of novel reporter animal models with enhanced capabilities.展开更多
【目的】利用CRISPR/Cas9技术建立绵羊示踪脐带间充质干细胞系,为间充质干细胞的临床治疗与分化机制研究奠定基础。【方法】根据绵羊ROSA26的基因组序列,利用在线工具ZiFiT Targeter Version 4.2设计合成3对引物,利用点突变法,以px330...【目的】利用CRISPR/Cas9技术建立绵羊示踪脐带间充质干细胞系,为间充质干细胞的临床治疗与分化机制研究奠定基础。【方法】根据绵羊ROSA26的基因组序列,利用在线工具ZiFiT Targeter Version 4.2设计合成3对引物,利用点突变法,以px330质粒为模板分别进行PCR,DpnⅠ去除质粒DNA后,PCR产物自身环化,酶切测序鉴定,构建以绵羊Rosa26为靶标基因的sgRNA/Cas9载体,构建的质粒含Cas9和向导RNA(single-guide RNA,sgRNA)表达盒,由U6启动子驱动表达。将上述载体分别利用脂质体转染绵羊脐带间充质干细胞(sUMSCs),提取其基因组PCR后进行T7E1酶切,琼脂糖电泳分析条带灰度以检测载体编辑活性。根据sgRNA序列在绵羊ROSA26靶位点的上下游设计并合成左、右同源臂扩增引物,提取绵羊全基因组为模板分别进行PCR扩增得到左右同源臂,回收纯化后分别与pMD19-Simple连接,酶切测序鉴定获得左、右同源臂重组质粒。根据PCR引入的酶切位点,将左同源臂质粒和Donor表达载体DC-DON-SH02ROSA26进行酶切连接,鉴定获得左臂重组打靶载体,使用相同方法将右同源臂质粒连接到左臂打靶载体上,鉴定获得Donor打靶载体,载体携带嘌呤霉素抗性基因和绿色荧光蛋白(GFP)报告基因。在生长良好的sUMSCs中加入不同浓度的嘌呤霉素,观察细胞存活时间,确定最佳抗性筛选浓度和时间。利用脂质体共转sgRNA/Cas9载体和Donor载体到绵羊间充质干细胞,在其ROSA26位点切割DNA双链,在DNA断裂处通过同源重组方式引入报告基因,转染48 h后进行嘌呤霉素抗性筛选,筛选结束后更换正常培养基继续培养,观察绿色荧光的表达并提取阳性细胞基因组,针对ROSA26位点设计上下游两对引物对其进行PCR检测其整合情况。【结果】(1)针对绵羊Rosa26位点设计3对PCR引物,利用点突变法将sgRNA克隆至px330的BbsⅠ酶切位点上,成功构建sgRNA/Cas9载体px330-sgRNA1/2/3,将其分别转�展开更多
AIM To stably correct tyrosinaemia in proliferating livers of fumarylacetoacetate-hydrolase knockout(Fah-/-) mice by homologous-recombination-mediated targeted addition of the Fah gene.METHODS C57 BL/6 Fah?exon5 mice ...AIM To stably correct tyrosinaemia in proliferating livers of fumarylacetoacetate-hydrolase knockout(Fah-/-) mice by homologous-recombination-mediated targeted addition of the Fah gene.METHODS C57 BL/6 Fah?exon5 mice served as an animal model for human tyrosinaemia type 1 in our study. The vector was created by amplifying human Fah c DNA including the TTR promoter from a lentivirus plasmid as described. The Fah expression cassette was flanked by homologous arms(620 bp and 749 bp long) of the Rosa26 gene locus. Mice were injected with 2.1 × 108 VP of this vector(r AAV8-ROSA26.HAL-TTR.FahROSA26.HAR) via the tail vein. Mice in the control group were injected with 2.1 × 108 VP of a similar vector but missing the homologous arms(r AAV8-TTR.Fah). Primary hepatocytes from Fah-/-recipient mice, treated with our vectors, were isolated and 1 × 106 hepatocytes were transplanted into secondary Fah-/-recipient mice by injection into the spleen. Upon either vector application or hepatocyte transplantation NTBC treatment was stopped in recipient mice. RESULTS Here, we report successful HR-mediated genome editing by integration of a Fah gene expression cassette into the "safe harbour locus" Rosa26 by recombinant AAV8. Both groups of mice showed long-term survival, weight gain and FAH positive clusters as determined by immunohistochemistry analysis of liver sections in the absence of NTBC treatment. In the group of C57 BL/6 Fah?exon5 mice, which have been transplanted with hepatocytes from a mouse injected with r AAV8-ROSA26.HAL-TTR.Fah-ROSA26.HAR 156 d before, 6 out of 6 mice showed long-term survival, weight gain and FAH positive clusters without need for NTBC treatment. In contrast only 1 out 5 mice, who received hepatocytes from r AAV8-TTR.Fah treated mice, survived and showed few and smaller FAH positive clusters. These results demonstrate that homologous recombinationmediated Fah gene transfer corrects the phenotype in a mouse model of human tyrosinaemia type 1(Fah-/-mice) and is long lasting in a proliferating state of 展开更多
Transgenic technology allows a gene of interest to be introduced into the genome of a laboratory animal,and provides an extremely powerful tool to dissect the molecular mechanisms of disease.Transgenic mouse models ma...Transgenic technology allows a gene of interest to be introduced into the genome of a laboratory animal,and provides an extremely powerful tool to dissect the molecular mechanisms of disease.Transgenic mouse models made by microinjection of DNA into zygotic pronuclei in particular have been widely used by the genetics community for 30 years.However,it remains a rather crude approach:injected sequences randomly insert in multiple copies as concatamers,they can be mutagenic,and they have variable or silenced expression depending on the site of integration,a phenomenon called position effects.As a result,multiple lines are required in order to confirm appropriate transgene expression.This can be partially overcome by flanking transgenes with insulator sequences to protect the transgene from the influence of the surrounding regulatory elements.Large(\300 kb)BACbased transgenic vectors have also been shown to be more resistant to position effects.However,animals carrying extra copies of fairly large regions of the genome could have unpredictable phenotypes.The most effective method used to control for position effects is to target transgene insertion to specific genomic loci,the so-called targeted transgenesis;for instance,the fast,site-specific transgenic technology Targatt TM.The purpose of this review is to provide an overview on the current existing methods for making targeted transgenic mouse models.展开更多
基金Shanghai Municipal Health and Family Planning Commission Scientific Research Project,Grant/Award Number:20154Y0075Shanghai Municipal Fund for Science and Technology Development,Grant/Award Number:15140904000+1 种基金Shanghai Public Health Clinical Center,Grant/Award Number:KY-GW-2017-04,KY-GW-2018-48National Natural Science Foundation of China,Grant/Award Number:31270217,31601908,81471397
文摘Reporter genes are widely applied in biotechnology and biomedical research owning to their easy observation and lack of toxicity. Taking advantage of the reporter genes in conjunction with imaging technologies, a large number of reporter mouse models have been generated. Reporter mouse models provide systems that enable the studies of live cell imaging, cell lineage tracing, immunological research and cancers etc. in vivo. In this review, we describe the types of different reporter genes and reporter mouse models including, random reporter strains, Cre reporter strains and ROSA26 reporter strains. Collectively, these reporter mouse models have broadened scientific inquires and provided potential strategies for generation of novel reporter animal models with enhanced capabilities.
基金Rebirth, SFB 738the "Deutsche Forschungsgemeinschaft" (Gerok-Grant) for financial support
文摘AIM To stably correct tyrosinaemia in proliferating livers of fumarylacetoacetate-hydrolase knockout(Fah-/-) mice by homologous-recombination-mediated targeted addition of the Fah gene.METHODS C57 BL/6 Fah?exon5 mice served as an animal model for human tyrosinaemia type 1 in our study. The vector was created by amplifying human Fah c DNA including the TTR promoter from a lentivirus plasmid as described. The Fah expression cassette was flanked by homologous arms(620 bp and 749 bp long) of the Rosa26 gene locus. Mice were injected with 2.1 × 108 VP of this vector(r AAV8-ROSA26.HAL-TTR.FahROSA26.HAR) via the tail vein. Mice in the control group were injected with 2.1 × 108 VP of a similar vector but missing the homologous arms(r AAV8-TTR.Fah). Primary hepatocytes from Fah-/-recipient mice, treated with our vectors, were isolated and 1 × 106 hepatocytes were transplanted into secondary Fah-/-recipient mice by injection into the spleen. Upon either vector application or hepatocyte transplantation NTBC treatment was stopped in recipient mice. RESULTS Here, we report successful HR-mediated genome editing by integration of a Fah gene expression cassette into the "safe harbour locus" Rosa26 by recombinant AAV8. Both groups of mice showed long-term survival, weight gain and FAH positive clusters as determined by immunohistochemistry analysis of liver sections in the absence of NTBC treatment. In the group of C57 BL/6 Fah?exon5 mice, which have been transplanted with hepatocytes from a mouse injected with r AAV8-ROSA26.HAL-TTR.Fah-ROSA26.HAR 156 d before, 6 out of 6 mice showed long-term survival, weight gain and FAH positive clusters without need for NTBC treatment. In contrast only 1 out 5 mice, who received hepatocytes from r AAV8-TTR.Fah treated mice, survived and showed few and smaller FAH positive clusters. These results demonstrate that homologous recombinationmediated Fah gene transfer corrects the phenotype in a mouse model of human tyrosinaemia type 1(Fah-/-mice) and is long lasting in a proliferating state of
文摘Transgenic technology allows a gene of interest to be introduced into the genome of a laboratory animal,and provides an extremely powerful tool to dissect the molecular mechanisms of disease.Transgenic mouse models made by microinjection of DNA into zygotic pronuclei in particular have been widely used by the genetics community for 30 years.However,it remains a rather crude approach:injected sequences randomly insert in multiple copies as concatamers,they can be mutagenic,and they have variable or silenced expression depending on the site of integration,a phenomenon called position effects.As a result,multiple lines are required in order to confirm appropriate transgene expression.This can be partially overcome by flanking transgenes with insulator sequences to protect the transgene from the influence of the surrounding regulatory elements.Large(\300 kb)BACbased transgenic vectors have also been shown to be more resistant to position effects.However,animals carrying extra copies of fairly large regions of the genome could have unpredictable phenotypes.The most effective method used to control for position effects is to target transgene insertion to specific genomic loci,the so-called targeted transgenesis;for instance,the fast,site-specific transgenic technology Targatt TM.The purpose of this review is to provide an overview on the current existing methods for making targeted transgenic mouse models.