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Strict control of transgene expression in a mouse model for sensitive biological applications based on RMCE compatible ES cells

机译:基于RMCE兼容ES细胞的敏感生物应用小鼠模型中转基因表达的严格控制

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Recombinant mouse strains that harbor tightly controlled transgene expression proved to be indispensible tools to elucidate gene function. Different strategies have been employed to achieve controlled induction of the transgene. However, many models are accompanied by a considerable level of basal expression in the non-induced state. Thereby, applications that request tight control of transgene expression, such as the expression of toxic genes and the investigation of immune response to neo antigens are excluded. We developed a new Cre/loxP-based strategy to achieve strict control of transgene expression. This strategy was combined with RMCE (recombinase mediated cassette exchange) that facilitates the targeting of genes into a tagged site in ES cells. The tightness of regulation was confirmed using luciferase as a reporter. The transgene was induced upon breeding these mice to effector animals harboring either the ubiquitous (ROSA26) or liver-specific (Albumin) expression of CreER super(T2), and subsequent feeding with Tamoxifen. Making use of RMCE, luciferase was replaced by Ovalbumin antigen. Mice generated from these ES cells were mated with mice expressing liver-specific CreER super(T2). The transgenic mice were examined for the establishment of an immune response. They were fully competent to establish an immune response upon hepatocyte specific OVA antigen expression as indicated by a massive liver damage upon Tamoxifen treatment and did not show OVA tolerance. Together, this proves that this strategy supports strict control of transgenes that is even compatible with highly sensitive biological readouts.
机译:事实证明,具有严格控制的转基因表达的重组小鼠品系是阐明基因功能必不可少的工具。已经采用了不同的策略来实现对转基因的受控诱导。但是,许多模型在非诱导状态下伴随着相当水平的基础表达。因此,排除了要求严格控制转基因表达的应用,例如毒性基因的表达和对新抗原的免疫应答的研究。我们开发了一种新的基于Cre / loxP的策略,以实现对转基因表达的严格控制。该策略与RMCE(重组酶介导的盒式交换)相结合,后者有助于将基因靶向ES细胞中的标记位点。使用荧光素酶作为报道基因证实了调节的紧密性。在将这些小鼠繁殖为带有普遍表达CreER super(T2)的(ROSA26)或肝脏特异性(白蛋白)表达的效应动物后,诱导转基因,然后喂食他莫昔芬。利用RMCE,萤光素酶被卵清蛋白抗原取代。从这些ES细胞产生的小鼠与表达肝脏特异性CreER super(T2)的小鼠交配。检查转基因小鼠的免疫应答的建立。他们完全有能力针对肝细胞特异的OVA抗原表达建立免疫反应,如他莫昔芬治疗对肝脏造成的严重损害所表明的,并且不显示OVA耐受性。总之,这证明该策略支持严格控制转基因,甚至与高度敏感的生物读数兼容。

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