Nguyen Nhung Thi, He Lian, Martinez-Moczygemba Margarita, Huang Yun, Zhou Yubin
ACS Synth Biol. 2018 Mar 16;7(3):814-821. doi: 10.1021/acssynbio.7b00467. Epub 2018 Mar 6.
Tools capable of modulating gene expression in living organisms are very useful for interrogating the gene regulatory network and controlling biological processes. The catalytically inactive CRISPR/Cas9 (dCas9), when fused with repressive or activating effectors, functions as a versatile platform to reprogram gene transcription at targeted genomic loci. However, without temporal control, the application of these reprogramming tools will likely cause off-target effects and lack strict reversibility. To overcome this limitation, we report herein the development of a chemical or light-inducible transcriptional reprogramming device that combines photoswitchable genetically encoded calcium actuators with dCas9 to control gene expression. By fusing an engineered Ca-responsive NFAT fragment with dCas9 and transcriptional coactivators, we harness the power of light to achieve photoinducible transcriptional reprogramming in mammalian cells. This synthetic system (designated CaRROT) can also be used to document calcium-dependent activity in mammals after exposure to ligands or chemicals that would elicit calcium response inside cells.
能够调节活生物体中基因表达的工具对于研究基因调控网络和控制生物过程非常有用。催化失活的CRISPR/Cas9(dCas9)与抑制或激活效应物融合时,可作为一个通用平台,在靶向基因组位点对基因转录进行重新编程。然而,如果没有时间控制,这些重新编程工具的应用可能会导致脱靶效应,并且缺乏严格的可逆性。为了克服这一限制,我们在此报告了一种化学或光诱导转录重编程装置的开发,该装置将光开关基因编码钙激活剂与dCas9相结合以控制基因表达。通过将工程化的钙响应NFAT片段与dCas9和转录共激活剂融合,我们利用光的力量在哺乳动物细胞中实现光诱导转录重编程。这个合成系统(命名为CaRROT)也可用于记录哺乳动物在接触能引发细胞内钙反应的配体或化学物质后钙依赖性活性。