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首页> 外文期刊>Journal of Immunological Methods >Dual-promoter lentiviral system allows inducible expression of noxious proteins in macrophages.
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Dual-promoter lentiviral system allows inducible expression of noxious proteins in macrophages.

机译:双启动子慢病毒系统可以在巨噬细胞中诱导有害蛋白质的表达。

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In-depth studies of innate immunity require efficient genetic manipulation of macrophages, which is especially difficult in primary macrophages. We have developed a lentiviral system for inducible gene expression both in macrophage cell lines and in primary macrophages. A transgenic mouse strain C3H.TgN(SRA-rtTA) that expresses reverse tetracycline transactivator (rtTA) under the control of macrophage-specific promoter, a modified human Scavenger Receptor A (SRA) promoter was generated. For gene delivery, we constructed a dual-promoter lentiviral vector, in which expression of a "gene-of-interest" is driven by a doxycycline-inducible promoter and the expression of a selectable surface marker is driven by an independent constitutive promoter UBC. This vector is used for transduction of bone marrow-derived macrophage precursors. The transduced cells can be enriched to 95-99% purity using marker-specific monoclonal antibodies, expanded and differentiated into mature macrophages or myeloid dendritic cells.We also successfully used this approach for inducible protein expression in hard to transfect macrophage cell lines. Because many proteins, which are expressed by activated or infected macrophages, possess cytotoxic, anti-proliferative or pro-apoptotic activities, generation of stable macrophage cell lines that constitutively express those proteins is impossible. Our method will be especially useful to study immunity-related macrophage proteins in their physiological context during macrophage activation or infection.
机译:对先天免疫的深入研究要求对巨噬细胞进行有效的遗传操作,这在原代巨噬细胞中尤其困难。我们已经开发了用于在巨噬细胞系和原代巨噬细胞中诱导基因表达的慢病毒系统。在巨噬细胞特异性启动子的控制下表达反向四环素反式激活子(rtTA)的转基因小鼠品系C3H.TgN(SRA-rtTA),生成了修饰的人清道夫受体A(SRA)启动子。对于基因递送,我们构建了双启动子慢病毒载体,其中“目的基因”的表达由强力霉素诱导的启动子驱动,而选择性表面标记的表达由独立的组成型启动子UBC驱动。该载体用于转导源自骨髓的巨噬细胞前体。可以使用标记特异性单克隆抗体将转导的细胞浓缩至95-99%的纯度,然后扩增并分化为成熟的巨噬细胞或髓样树突状细胞。我们还成功地将这种方法用于难以转染的巨噬细胞系中的诱导蛋白表达。由于许多由活化或感染的巨噬细胞表达的蛋白质具有细胞毒性,抗增殖或促凋亡活性,因此不可能生成组成性表达那些蛋白质的稳定巨噬细胞系。我们的方法在研究巨噬细胞激活或感染过程中的生理背景下与免疫相关的巨噬细胞蛋白特别有用。

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