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Tao, Rong

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Tao

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Tao, Rong

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Now showing 1 - 2 of 2
  • Publication

    Optimized Strategy for in Vivo Cas9-Activation in Drosophila

    (National Academy of Sciences, 2017-08-29) Ewen-Campen, Benjamin; Yang-Zhou, Donghui; Fernandes, Vitória R.; González, Delfina P.; Liu, Lu-Ping; Tao, Rong; Ren, Xingjie; Sun, Jin; Hu, Yanhui; Zirin, Jonathan; Mohr, Stephanie; Ni, Jian-Quan; Perrimon, Norbert

    While several large-scale resources are available for in vivo loss-of-function studies in Drosophila, an analogous resource for overexpressing genes from their endogenous loci does not exist. We describe a strategy for generating such a resource using Cas9 transcriptional activators (CRISPRa). First, we compare a panel of CRISPRa approaches and demonstrate that, for in vivo studies, dCas9-VPR is the most optimal activator. Next, we demonstrate that this approach is scalable and has a high success rate, as >75% of the lines tested activate their target gene. We show that CRISPRa leads to physiologically relevant levels of target gene expression capable of generating strong gain-of-function (GOF) phenotypes in multiple tissues and thus serves as a useful platform for genetic screening. Based on the success of this CRISRPa approach, we are generating a genome-wide collection of flies expressing single-guide RNAs (sgRNAs) for CRISPRa. We also present a collection of more than 30 Gal4 > UAS:dCas9-VPR lines to aid in using these sgRNA lines for GOF studies in vivo.

  • Publication

    A Genome-Scale shRNA Resource for Transgenic RNAi in Drosophila

    (Springer Science and Business Media LLC, 2011-05) Ni, Jian-Quan; Zhou, Rui; Czech, Benjamin; Liu, Lu-Ping; Holderbaum, Laura; Yang-Zhou, Donghui; Shim, Hye-Seok; Tao, Rong; Handler, Dominik; Karpowicz, Phillip; Binari, Richard; Booker, Matthew; Brennecke, Julius; Perkins, Lizabeth A.; Hannon, Gregory J.; Perrimon, Norbert

    Existing transgenic RNAi resources in Drosophila melanogaster based on long double-stranded hairpin RNAs are powerful tools for functional studies, but they are ineffective in gene knockdown during oogenesis, an important model system for the study of many biological questions. We show that shRNAs, modeled on an endogenous microRNA, are extremely effective at silencing gene expression during oogenesis. We also describe our progress toward building a genome-wide shRNA resource.