清脆的
生物
转座因子
反式激活crRNA
遗传学
转座酶
计算生物学
核糖核酸
基因组
CRISPR干扰
基因组编辑
DNA
核酸酶
Cas9
基因
作者
Sanne E. Klompe,Nora Jaber,Leslie Y. Beh,Jason Mohabir,Aude Bernheim,Samuel H. Sternberg
出处
期刊:Molecular Cell
[Elsevier BV]
日期:2022-02-01
卷期号:82 (3): 616-628.e5
被引量:26
标识
DOI:10.1016/j.molcel.2021.12.021
摘要
Canonical CRISPR-Cas systems utilize RNA-guided nucleases for targeted cleavage of foreign nucleic acids, whereas some nuclease-deficient CRISPR-Cas complexes have been repurposed to direct the insertion of Tn7-like transposons. Here, we established a bioinformatic and experimental pipeline to comprehensively explore the diversity of Type I-F CRISPR-associated transposons. We report DNA integration for 20 systems and identify a highly active subset that exhibits complete orthogonality in transposon DNA mobilization. We reveal the modular nature of CRISPR-associated transposons by exploring the horizontal acquisition of targeting modules and by characterizing a system that encodes both a programmable, RNA-dependent pathway, and a fixed, RNA-independent pathway. Finally, we analyzed transposon-encoded cargo genes and found the striking presence of anti-phage defense systems, suggesting a role in transmitting innate immunity between bacteria. Collectively, this study substantially advances our biological understanding of CRISPR-associated transposon function and expands the suite of RNA-guided transposases for programmable, large-scale genome engineering.
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