Huynh Nhan, Zeng Jie, Liu Wen, King-Jones Kirst
Department of Biological Sciences, Faculty of Science, University of Alberta, G-502 Biological Sciences Bldg, Edmonton, Alberta T6G 2E9, Canada.
Department of Biological Sciences, Faculty of Science, University of Alberta, G-502 Biological Sciences Bldg, Edmonton, Alberta T6G 2E9, Canada
G3 (Bethesda). 2018 Nov 6;8(11):3593-3605. doi: 10.1534/g3.118.200539.
Targeting gene function with spatial or temporal specificity is a key goal in molecular genetics. CRISPR-Cas9 has greatly facilitated this strategy, but some standard approaches are problematic. For instance, simple tissue-specific or global overexpression of Cas9 can cause significant lethality or developmental delays even in the absence of gRNAs. In particular, we found that Gal4-mediated expression of UAS-Cas9 in the prothoracic gland (PG) was not a suitable strategy to disrupt gene expression, since Cas9 alone caused widespread lethality. The PG is widely used for studying endocrine gland function during animal development, but tools validating PG-specific RNAi phenotypes are lacking. Here, we present a collection of modular gateway-compatible CRISPR-Cas9 tools that allow precise modulation of target gene activity with temporal and spatial specificity. We also demonstrate that Cas9 fused to the progesterone ligand-binding domain can be used to activate gene expression via RU486. Using these approaches, we were able to avoid the lethality associated with simple GAL4-mediated overexpression of Cas9 in the PG. Given that the PG is a polytene tissue, we conclude that these tools work effectively in endoreplicating cells where Cas9 has to target multiple copies of the same locus. Our toolkit can be easily adapted for other tissues and can be used both for gain- and loss-of-function studies.
以空间或时间特异性靶向基因功能是分子遗传学的一个关键目标。CRISPR-Cas9极大地推动了这一策略,但一些标准方法存在问题。例如,即使在没有引导RNA(gRNAs)的情况下,简单的组织特异性或全局过表达Cas9也会导致显著的致死性或发育延迟。特别是,我们发现Gal4介导的UAS-Cas9在胸腺(PG)中的表达不是破坏基因表达的合适策略,因为单独的Cas9会导致广泛的致死性。PG被广泛用于研究动物发育过程中的内分泌腺功能,但缺乏验证PG特异性RNA干扰表型的工具。在这里,我们展示了一组模块化的、与网关兼容的CRISPR-Cas9工具,这些工具允许以时间和空间特异性精确调节靶基因活性。我们还证明,与孕酮配体结合域融合的Cas9可用于通过RU486激活基因表达。使用这些方法,我们能够避免与PG中简单的Gal4介导的Cas9过表达相关的致死性。鉴于PG是一种多线组织,我们得出结论,这些工具在核内复制细胞中有效工作,在这些细胞中Cas9必须靶向同一基因座的多个拷贝。我们的工具包可以很容易地适用于其他组织,并且可用于功能获得和功能丧失研究。