Bergenholm David, Dabirian Yasaman, Ferreira Raphael, Siewers Verena, David Florian, Nielsen Jens
Department of Biology and Biological Engineering, Chalmers University of Technology, Gothenburg, Sweden.
Synth Biol (Oxf). 2021 Jul 27;6(1):ysab014. doi: 10.1093/synbio/ysab014. eCollection 2021.
The clustered regularly interspaced short palindromic repeats (CRISPR)/Cas9 system has become a standard tool in many genome engineering endeavors. The endonuclease-deficient version of Cas9 (dCas9) is also a powerful programmable tool for gene regulation. In this study, we made use of transcription factor (TF) binding data to obtain a better understanding of the interplay between TF binding and binding of dCas9 fused to an activator domain, VPR. More specifically, we targeted dCas9-VPR toward binding sites of Gcr1-Gcr2 and Tye7 present in several promoters of genes encoding enzymes engaged in the central carbon metabolism. From our data, we observed an upregulation of gene expression when dCas9-VPR was targeted next to a TF binding motif, whereas a downregulation or no change was observed when dCas9 was bound on a TF motif. This suggests a steric competition between dCas9 and the specific TF. Integrating TF binding data, therefore, proved to be useful for designing guide RNAs for CRISPR interference or CRISPR activation applications.
成簇规律间隔短回文重复序列(CRISPR)/Cas9系统已成为许多基因组工程工作中的标准工具。Cas9的核酸内切酶缺陷型版本(dCas9)也是一种用于基因调控的强大的可编程工具。在本研究中,我们利用转录因子(TF)结合数据,以更好地理解TF结合与融合激活结构域VPR的dCas9结合之间的相互作用。更具体地说,我们将dCas9-VPR靶向存在于参与中心碳代谢的酶编码基因的几个启动子中的Gcr1-Gcr2和Tye7的结合位点。从我们的数据中,我们观察到当dCas9-VPR靶向TF结合基序旁边时基因表达上调,而当dCas9结合在TF基序上时观察到下调或无变化。这表明dCas9与特定TF之间存在空间竞争。因此,整合TF结合数据被证明有助于设计用于CRISPR干扰或CRISPR激活应用的向导RNA。