Interfering with retrotransposition by two types of CRISPR effectors: Cas12a and Cas13a

被引:0
|
作者
Niubing Zhang
Xinyun Jing
Yuanhua Liu
Minjie Chen
Xianfeng Zhu
Jing Jiang
Hongbing Wang
Xuan Li
Pei Hao
机构
[1] Chinese Academy of Sciences,Key Laboratory of Synthetic Biology, CAS Center for Excellence in Molecular Plant Sciences, Institute of Plant Physiology and Ecology
[2] Henan University,School of Life Sciences
[3] Chinese Academy of Sciences,Key Laboratory of Molecular Virology and Immunology, Institute Pasteur of Shanghai
[4] Michigan State University,Department of Physiology
来源
Cell Discovery | / 6卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
CRISPRs are a promising tool being explored in combating exogenous retroviral pathogens and in disabling endogenous retroviruses for organ transplantation. The Cas12a and Cas13a systems offer novel mechanisms of CRISPR actions that have not been evaluated for retrovirus interference. Particularly, a latest study revealed that the activated Cas13a provided bacterial hosts with a “passive protection” mechanism to defend against DNA phage infection by inducing cell growth arrest in infected cells, which is especially significant as it endows Cas13a, a RNA-targeting CRISPR effector, with mount defense against both RNA and DNA invaders. Here, by refitting long terminal repeat retrotransposon Tf1 as a model system, which shares common features with retrovirus regarding their replication mechanism and life cycle, we repurposed CRISPR-Cas12a and -Cas13a to interfere with Tf1 retrotransposition, and evaluated their different mechanisms of action. Cas12a exhibited strong inhibition on retrotransposition, allowing marginal Tf1 transposition that was likely the result of a lasting pool of Tf1 RNA/cDNA intermediates protected within virus-like particles. The residual activities, however, were completely eliminated with new constructs for persistent crRNA targeting. On the other hand, targeting Cas13a to Tf1 RNA intermediates significantly inhibited Tf1 retrotransposition. However, unlike in bacterial hosts, the sustained activation of Cas13a by Tf1 transcripts did not cause cell growth arrest in S. pombe, indicating that virus-activated Cas13a likely acted differently in eukaryotic cells. The study gained insight into the actions of novel CRISPR mechanisms in combating retroviral pathogens, and established system parameters for developing new strategies in treatment of retrovirus-related diseases.
引用
收藏
相关论文
共 50 条
  • [41] Universal theranostic CRISPR/Cas13a RNA-editing system for glioma
    Wu, Ye
    Wang, Yunfei
    Zhou, Junhu
    Wang, Jianhao
    Zhan, Qi
    Wang, Qixue
    Yang, Eryan
    Jin, Weili
    Tong, Fei
    Zhao, Jixing
    Hong, Biao
    Liu, Junrui
    Kang, Chunsheng
    THERANOSTICS, 2023, 13 (15): : 5305 - 5321
  • [42] Detection of SARS-CoV-2 Using LAMP and CRISPR/Cas13a
    Lamothe, Gabriel
    Tremblay, Jacques
    MOLECULAR THERAPY, 2021, 29 (04) : 426 - 427
  • [43] Split activator of CRISPR/Cas12a for direct and sensitive detection of microRNA
    He, Wen
    Li, Xinyu
    Li, Xinmin
    Guo, Minghui
    Zhang, Mengxuan
    Hu, Ruiwei
    Li, Menghan
    Ding, Shijia
    Yan, Yurong
    ANALYTICA CHIMICA ACTA, 2024, 1303
  • [44] Universal DNAzyme walkers-triggered CRISPR-Cas12a/Cas13a bioassay for the synchronous detection of two exosomal proteins and its application in intelligent diagnosis of cancer
    Ding, Lihua
    Wu, Yan
    Liu, Li-e
    He, Leiliang
    Yu, Songcheng
    Effah, Clement Yaw
    Liu, Xia
    Qu, Lingbo
    Wu, Yongjun
    BIOSENSORS & BIOELECTRONICS, 2023, 219
  • [45] Activity and Specificity of CRISPR-Cas9 and Cas12a Systems in Plant Genome Editing.
    Qi, Yiping
    IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL, 2019, 55 : S4 - S4
  • [46] Optimized design parameters for CRISPR Cas9 and Cas12a homology-directed repair
    Mollie S. Schubert
    Bernice Thommandru
    Jessica Woodley
    Rolf Turk
    Shuqi Yan
    Gavin Kurgan
    Matthew S. McNeill
    Garrett R. Rettig
    Scientific Reports, 11
  • [47] Graphene oxide assisting the visual detection of Salmonella by CRISPR/ Cas12a
    Wang, Liu
    Bai, Linlin
    Wang, Hongmei
    He, Kaiyu
    Wang, Rui
    Wang, Qiang
    Zhang, Fang
    Xu, Xiahong
    MICROCHEMICAL JOURNAL, 2023, 191
  • [48] In Vitro Inhibition of Influenza Virus Using CRISPR/Cas13a in Chicken Cells
    Challagulla, Arjun
    Schat, Karel A.
    Doran, Timothy J.
    METHODS AND PROTOCOLS, 2021, 4 (02)
  • [49] An EXPAR-CRISPR/Cas12a Assay for Rapid Detection of Salmonella
    Wensen Lin
    Mintao Huang
    Hongjian Fu
    Luxin Yu
    Ying Chen
    Lingwei Chen
    Yanzhen Lin
    Ting Wen
    Xiaomin Luo
    Yanguang Cong
    Current Microbiology, 2025, 82 (6)
  • [50] Synergistic Incorporation of Two ssDNA Activators Enhances the Trans-Cleavage of CRISPR/Cas12a
    Li, Qian
    Song, Zhi-Ling
    Zhang, Yuxi
    Zhu, Lina
    Yang, Qian
    Liu, Xingfu
    Sun, Xufeng
    Chen, Xuxu
    Kong, Rongmei
    Fan, Gao-Chao
    Luo, Xiliang
    ANALYTICAL CHEMISTRY, 2023, 95 (23) : 8879 - 8888