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A Cre-IoxP-based mouse model for conditional somatic gene expression and knockdown in vivo by using avian retroviral vectors

机译:基于Cre-IoxP的小鼠模型,通过使用禽逆转录病毒载体在体内进行条件性体细胞基因表达和敲除

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Site- and time-specific somatic gene transfer by using the avian sarcoma-leukosis retrovirus RCAS (replication-competent avian sarcoma-leukosis virus long terminal repeat with splice acceptor) has been shown to be a powerful tool to analyze gene function in vivo. RCAS retroviruses that express the avian subgroup A envelope transduce only mammalian cells genetically engineered to express the avian retroviral receptor, tumor virus A (TVA). Here, we generated a knockin mouse line termed LSL-R26~(Tva-lacZ) with concomitant conditional expression of TV A and lacZ by targeting the Rosa26 locus. A loxP-f lanked transcriptional stop cassette was used for conditional activation of TVA and LacZ expression in a Cre-recombinase-dependent manner. To demonstrate the ability of this system for conditional somatic gene transfer in vivo, we directed TVA expression to the pancreas. Introduction of an RCAS vector with Bryan-RSV polymerase and subgroup A envelope [RCASBP(A)] carrying oncogenic Kras~(G12D) induced focal ductal pancreatic lesions that recapitulate human pancreatic intraepithelial neoplasias that progress to pancreatic ductal adenocarcinomas. TVA-mediated infection of genetically engineered mice with endogenous expression of Kras~(G12D) in pancreatic progenitor cells by using RCASBP(A) virus carrying a short hairpin RNA directed against murine TP53, resulted in dramatically enhanced progression to invasive adenocarcinomas. These results show that conditional expression of TVA enables spatiotemporal gene expression and knockdown in a small subset of somatic cells in vivo. Therefore, it closely models carcinogenesis in humans where tumors evolve from somatic gene mutations in developmentally normal cells. Combined with the growing number of Cre expression models, RCAS-TVA-based gene expression and knockdown systems open up promising perspectives for analysis of gene function in a time-controlled and tissue-specific fashion in vitro and in vivo.
机译:通过使用禽肉瘤白血病逆转录病毒RCAS(具有剪接受体的复制能力的禽肉瘤白血病病毒长末端重复序列),定点和特定时间的体细胞基因转移已被证明是分析体内基因功能的强大工具。表达禽类亚群A包膜的RCAS逆转录病毒仅转导经过基因工程改造以表达禽类逆转录病毒受体肿瘤病毒A(TVA)的哺乳动物细胞。在这里,我们针对Rosa26基因座,产生了一种敲除小鼠品系,称为LSL-R26〜(Tva-lacZ),伴随着TVA和lacZ的条件表达。 loxP-f侧翼转录终止盒以Cre-重组酶依赖的方式用于TVA和LacZ表达的条件激活。为了证明该系统用于体内条件性体细胞基因转移的能力,我们将TVA表达导向胰腺。引入带有Br​​yan-RSV聚合酶和带有致癌性Kras〜(G12D)的A组包膜[RCASBP(A)]的RCAS载体诱导的局灶性胰腺病变,概括了人类胰腺上皮内瘤变,发展为胰腺导管腺癌。 TVA介导的基因工程小鼠通过使用携带针对鼠TP53的短发夹RNA的RCASBP(A)病毒感染胰腺祖细胞内源性表达Kras〜(G12D)的基因工程小鼠,导致向浸润性腺癌的发展显着增强。这些结果表明,TVA的条件表达能够在体内一小部分体细胞中实现时空基因表达和敲低。因此,它紧密地模拟了人类的癌变过程,其中肿瘤从发育正常细胞中的体细胞基因突变演变而来。与越来越多的Cre表达模型相结合,基于RCAS-TVA的基因表达和敲除系统为体外和体内以时间控制和组织特异性的方式分析基因功能开辟了广阔的前景。

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