CRISPR-Cas13b系统在活细胞中的多色RNA成像。

Liang-Zhong Yang , Bao-Qing Gao , Youkui Huang , Ying Wang , Li Yang , Ling-Ling Chen
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引用次数: 9

摘要

可视化RNA动力学对于理解RNA功能非常重要。催化死亡(d)CRISPR-Cas13系统已被建立来对活细胞中的RNA进行成像和跟踪,但用于RNA成像的有效dCas13仍然有限。在这里,我们分析了宏基因组和细菌基因组数据库,以全面筛选Cas13同源物在活哺乳动物细胞中的RNA标记能力。在8种先前未报道的可用于RNA标记的dCas13蛋白中,当通过单引导(g)RNA靶向内源性MUC4和NEAT1_2时,dHgm4Cas13b和dMisCas13b显示出与最知名的蛋白相当(如果不是更高的话)的效率。使用GCN4重复序列对不同dCas13系统的标记稳健性的进一步检查显示,在单个RNA分子水平上,dHgm4Cas13b和dMisCas13b成像至少需要12个GCN4反复序列,而已报道的dWaCas13a、dRfxCas13d和dPguCas13b需要>24个GCN3重复序列。重要的是,通过沉默dMisCas13b(ddMisCas13b)的前crRNA处理活性,并进一步将包括PP7、MS2、Pepper或BoxB在内的RNA适体结合到单个gRNA中,开发了CRISPR调色板系统,以成功实现活细胞中的多色RNA可视化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Multi-color RNA imaging with CRISPR-Cas13b systems in living cells

Visualizing RNA dynamics is important for understanding RNA function. Catalytically dead (d) CRISPR-Cas13 systems have been established to image and track RNAs in living cells, but efficient dCas13 for RNA imaging is still limited. Here, we analyzed metagenomic and bacterial genomic databases to comprehensively screen Cas13 homologies for their RNA labeling capabilities in living mammalian cells. Among eight previously unreported dCas13 proteins that can be used for RNA labeling, dHgm4Cas13b and dMisCas13b displayed comparable, if not higher, efficiencies to the best-known ones when targeting endogenous MUC4 and NEAT1_2 by single guide (g) RNAs. Further examination of the labeling robustness of different dCas13 systems using the GCN4 repeats revealed that a minimum of 12 GCN4 repeats was required for dHgm4Cas13b and dMisCas13b imaging at the single RNA molecule level, while >24 GCN4 repeats were required for reported dLwaCas13a, dRfxCas13d and dPguCas13b. Importantly, by silencing pre-crRNA processing activity of dMisCas13b (ddMisCas13b) and further incorporating RNA aptamers including PP7, MS2, Pepper or BoxB to individual gRNAs, a CRISPRpalette system was developed to successfully achieve multi-color RNA visualization in living cells.

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来源期刊
Cell insight
Cell insight Neuroscience (General), Biochemistry, Genetics and Molecular Biology (General), Cancer Research, Cell Biology
CiteScore
2.70
自引率
0.00%
发文量
0
审稿时长
35 days
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