Department of Genetics, Harvard Medical School, Boston, United States.
Department of Physiology and Biophysics, University of California, Irvine, Irvine, United States.
Elife. 2024 Apr 3;12:RP94073. doi: 10.7554/eLife.94073.
The ability to independently control gene expression in two different tissues in the same animal is emerging as a major need, especially in the context of inter-organ communication studies. This type of study is made possible by technologies combining the GAL4/UAS and a second binary expression system such as the LexA system or QF system. Here, we describe a resource of reagents that facilitate combined use of the GAL4/UAS and a second binary system in various tissues. Focusing on genes with well-characterized GAL4 expression patterns, we generated a set of more than 40 LexA-GAD and QF2 insertions by CRISPR knock-in and verified their tissue specificity in larvae. We also built constructs that encode QF2 and LexA-GAD transcription factors in a single vector. Following successful integration of this construct into the fly genome, FLP/FRT recombination is used to isolate fly lines that express only QF2 or LexA-GAD. Finally, using new compatible shRNA vectors, we evaluated both LexA and QF systems for in vivo gene knockdown and are generating a library of such RNAi fly lines as a community resource. Together, these LexA and QF system vectors and fly lines will provide a new set of tools for researchers who need to activate or repress two different genes in an orthogonal manner in the same animal.
在同一动物的两种不同组织中独立控制基因表达的能力正成为一种主要需求,特别是在器官间通讯研究方面。这种类型的研究可以通过结合 GAL4/UAS 和第二种二元表达系统(如 LexA 系统或 QF 系统)的技术来实现。在这里,我们描述了一种便于在各种组织中联合使用 GAL4/UAS 和第二种二元系统的试剂资源。我们专注于具有明确 GAL4 表达模式的基因,通过 CRISPR 敲入生成了一组超过 40 个 LexA-GAD 和 QF2 插入物,并在幼虫中验证了它们的组织特异性。我们还构建了在单个载体中编码 QF2 和 LexA-GAD 转录因子的构建体。成功将该构建体整合到果蝇基因组后,使用 FLP/FRT 重组来分离仅表达 QF2 或 LexA-GAD 的果蝇系。最后,使用新的兼容 shRNA 载体,我们评估了 LexA 和 QF 系统在体内基因敲低方面的性能,并正在生成一个此类 RNAi 果蝇系的文库作为社区资源。这些 LexA 和 QF 系统载体和果蝇系将为需要以正交方式在同一动物中激活或抑制两种不同基因的研究人员提供一组新的工具。