首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Cell-type and promoter-context dependent retinoic acid receptor (RAR) redundancies for RAR beta 2 and Hoxa-1 activation in F9 and P19 cells can be artefactually generated by gene knockouts.
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Cell-type and promoter-context dependent retinoic acid receptor (RAR) redundancies for RAR beta 2 and Hoxa-1 activation in F9 and P19 cells can be artefactually generated by gene knockouts.

机译:F9和P19细胞中RAR beta 2和Hoxa-1激活的细胞类型和依赖启动子的视黄酸受体(RAR)冗余可以通过基因敲除来人工产生。

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摘要

By using RAR type (alpha, beta, or gamma)-specific synthetic retinoids and a pan-retinoic X receptor (RXR)-specific ligand, we have investigated the contribution of RARs and RXRs in the activation of RA target genes and the differentiation of embryonal carcinoma cells. We demonstrate cell-type- and promoter context-dependent functional redundancies that differ between the three RAR types for mediating the induction of RARbeta2 and Hoxa-1 in wild-type, RARgamma-/- and RARalpha-/- F9 cells and in P19 cells. The extent of redundancy between RARs is further modulated by the synergistic activation of RXRs with a pan-RXR agonist. We also demonstrate that the expression of RARbeta2 is auto-inducible in RARgamma-/- but not in wild-type F9 cells, indicating that the functional redundancies observed between RARs in gene disruption studies can be artefactually generated. Thus, even though all three RARs can functionally substitute each other for inducing the expression of RA target genes and cell differentiation, one RAR can cell-specifically override the activity of the other RARs. Interestingly, only RARgamma can mediate the retinoic acid-induced differentiation of wild-type F9 cells, whereas the differentiation of P19 cells can be mediated by either RARalpha or RARgamma.
机译:通过使用RAR类型(α,β或γ)特异性合成类维生素A和全视黄酸X受体(RXR)特异性配体,我们研究了RAR和RXR在激活RA靶基因和分化RA中的作用。胚胎癌细胞。我们证明了在野生型,RARgamma-/-和RARalpha-/-F9细胞和P19细胞中介导RARbeta2和Hoxa-1的三种RAR类型之间不同的细胞类型和启动子上下文依赖的功能冗余。 RAR之间的冗余程度可通过泛RXR激动剂对RXR的协同激活来进一步调节。我们还证明了RARbeta2的表达在RARgamma-/-中是可自动诱导的,但在野生型F9细胞中不是自动诱导的,这表明可以人工制造RAR之间在基因破坏研究中观察到的功能冗余。因此,即使所有三个RAR都可以在功能上相互替代,以诱导RA靶基因的表达和细胞分化,但一个RAR可以在细胞特异性上超越其他RAR的活性。有趣的是,只有RARgamma可以介导视黄酸诱导的野生型F9细胞分化,而P19细胞的分化可以由RARalpha或RARgamma介导。

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