Chung Jie-Yu, Mackay Fabienne, Alderuccio Frank
Department of Immunology, Central Clinical School, Monash University, Australia.
Department of Immunology, Central Clinical School, Monash University, Australia.
J Immunol Methods. 2015 Jan;416:183-8. doi: 10.1016/j.jim.2014.11.002. Epub 2014 Nov 8.
Retroviral gene therapy combined with bone marrow stem cell transplantation can be used to generate mice with ectopic gene expression in the bone marrow compartment in a quick and cost effective manner when compared to generating and maintaining transgenic mouse lines. However a limitation of this procedure is the lack of cell specificity in gene expression that is associated with the use of endogenous retroviral promoters. Restricting gene expression to specific cell subsets utilising tissue-specific promoter driven retroviral vectors is a challenge. Here we describe the generation of conditional expression of retrovirally encoded genes in specific bone marrow derived cell lineages utilising a Cre-dependent retroviral vector. By utilising Lck and CD19 restricted Cre transgenic bone marrow stem cells, we generate chimeric animals with T or B lymphocyte restricted gene expression respectively. The design of the Cre-dependent retroviral vector enables expression of encoded MOG and GFP genes only in association with Cre mediated DNA inversion. Importantly this strategy does not significantly increase the size of the retroviral vector; as such we are able to generate bone marrow chimeric animals with significantly higher chimerism levels than previous studies utilising Cre-dependent retroviral vectors and Cre transgenic bone marrow stem cells. This demonstrates that the use of Cre-dependent retroviral vectors is able to yield high chimerism levels for experimental use and represent a viable alternative to generating transgenic animals.
与生成和维持转基因小鼠品系相比,逆转录病毒基因疗法与骨髓干细胞移植相结合,能够快速且经济高效地培育出骨髓中存在异位基因表达的小鼠。然而,该方法存在一个局限性,即与使用内源性逆转录病毒启动子相关的基因表达缺乏细胞特异性。利用组织特异性启动子驱动的逆转录病毒载体将基因表达限制在特定细胞亚群是一项挑战。在此,我们描述了利用依赖Cre的逆转录病毒载体在特定骨髓来源细胞谱系中实现逆转录病毒编码基因的条件性表达。通过利用Lck和CD19限制的Cre转基因骨髓干细胞,我们分别培育出了基因表达限制在T或B淋巴细胞的嵌合动物。依赖Cre的逆转录病毒载体的设计使得编码的MOG和GFP基因仅在Cre介导的DNA倒位时表达。重要的是,这种策略不会显著增加逆转录病毒载体的大小;因此,与之前利用依赖Cre的逆转录病毒载体和Cre转基因骨髓干细胞的研究相比,我们能够培育出嵌合水平显著更高的骨髓嵌合动物。这表明,使用依赖Cre的逆转录病毒载体能够产生用于实验的高嵌合水平,是生成转基因动物的一种可行替代方法。