Gene Editing Research Center, Hebei University of Science and Technology, Shijiazhuang, Hebei 050018, China.
School of Basic Medical Sciences, Hebei University, Baoding, Hebei 071000, China.
Nucleic Acids Res. 2022 May 6;50(8):e46. doi: 10.1093/nar/gkac014.
Given the fact that the localization of RNAs is closely associated with their functions, techniques developed for tracking the distribution of RNAs in live cells have greatly advanced the study of RNA biology. Recently, innovative application of fluorescent protein-labelled Cas9 and Cas13 into live-cell RNA tracking further enriches the toolbox. However, the Cas9/Cas13 platform, as well as the widely-used MS2-MCP technique, failed to solve the problem of high background noise. It was recently reported that CRISPR/Cas6 would exhibit allosteric alteration after interacting with the Cas6 binding site (CBS) on RNAs. Here, we exploited this feature and designed a Cas6-based switch platform for detecting target RNAs in vivo. Conjugating split-Venus fragments to both ends of the endoribonuclease-mutated Escherichia coli Cas6(dEcCas6) allowed ligand (CBS)-activated split-Venus complementation. We name this platform as Cas6 based Fluorescence Complementation (Cas6FC). In living cells, Cas6FC could detect target RNAs with nearly free background noise. Moreover, as minimal as one copy of CBS (29nt) tagged in an RNA of interest was able to turn on Cas6FC fluorescence, which greatly reduced the odds of potential alteration of conformation and localization of target RNAs. Thus, we developed a new RNA tracking platform inherently with high sensitivity and specificity.
鉴于 RNA 的定位与其功能密切相关,因此开发用于跟踪 RNA 在活细胞中分布的技术极大地推动了 RNA 生物学的研究。最近,将荧光蛋白标记的 Cas9 和 Cas13 创新性地应用于活细胞 RNA 追踪,进一步丰富了工具包。然而,Cas9/Cas13 平台以及广泛使用的 MS2-MCP 技术未能解决高背景噪声的问题。最近有报道称,CRISPR/Cas6 在与 RNA 上的 Cas6 结合位点 (CBS) 相互作用后会表现出变构改变。在这里,我们利用这一特性设计了一种基于 Cas6 的开关平台,用于在体内检测靶 RNA。将分裂 Venus 片段连接到内切核酸酶突变的大肠埃希菌 Cas6(dEcCas6)的两端,允许配体 (CBS) 激活分裂 Venus 互补。我们将这个平台命名为 Cas6 基于荧光互补 (Cas6FC)。在活细胞中,Cas6FC 可以检测到几乎没有背景噪声的靶 RNA。此外,仅在感兴趣的 RNA 中标记一个 CBS(29nt)拷贝就能激活 Cas6FC 荧光,这大大降低了靶 RNA 构象和定位潜在改变的可能性。因此,我们开发了一种新的 RNA 追踪平台,具有固有高灵敏度和特异性。