The CRISPR/Cas System: A Customizable Toolbox for Molecular Detection

被引:19
作者
He, Yuxuan [1 ]
Yan, Wei [1 ]
Long, Likun [1 ]
Dong, Liming [1 ]
Ma, Yue [1 ]
Li, Congcong [1 ]
Xie, Yanbo [1 ]
Liu, Na [1 ]
Xing, Zhenjuan [1 ]
Xia, Wei [1 ]
Li, Feiwu [1 ]
机构
[1] Jilin Acad Agr Sci, Inst Agr Qual Stand & Testing Technol, Changchun 130033, Peoples R China
关键词
CRISPR; Cas system; point-of-care testing; molecular detection; application; EVOLUTIONARY CLASSIFICATION; ULTRASENSITIVE DETECTION; CAS SYSTEMS; AMPLIFICATION; CRISPR-CAS13A; ENDONUCLEASE; SARS-COV-2; SEQUENCE; INSIGHTS; VARIANTS;
D O I
10.3390/genes14040850
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Clustered regularly interspaced short palindromic repeats (CRISPR) and their associated proteins (Cas) are promising molecular diagnostic tools for rapidly and precisely elucidating the structure and function of genomes due to their high specificity, programmability, and multi-system compatibility in nucleic acid recognition. Multiple parameters limit the ability of a CRISPR/Cas system to detect DNA or RNA. Consequently, it must be used in conjunction with other nucleic acid amplification techniques or signal detection techniques, and the reaction components and reaction conditions should be modified and optimized to maximize the detection performance of the CRISPR/Cas system against various targets. As the field continues to develop, CRISPR/Cas systems have the potential to become an ultra-sensitive, convenient, and accurate biosensing platform for the detection of specific target sequences. The design of a molecular detection platform employing the CRISPR/Cas system is asserted on three primary strategies: (1) Performance optimization of the CRISPR/Cas system; (2) enhancement of the detection signal and its interpretation; and (3) compatibility with multiple reaction systems. This article focuses on the molecular characteristics and application value of the CRISPR/Cas system and reviews recent research progress and development direction from the perspectives of principle, performance, and method development challenges to provide a theoretical foundation for the development and application of the CRISPR/CAS system in molecular detection technology.
引用
收藏
页数:21
相关论文
共 111 条
  • [1] C2c2 is a single-component programmable RNA-guided RNA-targeting CRISPR effector
    Abudayyeh, Omar O.
    Gootenberg, Jonathan S.
    Konermann, Silvana
    Joung, Julia
    Slaymaker, Ian M.
    Cox, David B. T.
    Shmakov, Sergey
    Makarova, Kira S.
    Semenova, Ekaterina
    Minakhin, Leonid
    Severinov, Konstantin
    Regev, Aviv
    Lander, Eric S.
    Koonin, Eugene V.
    Zhang, Feng
    [J]. SCIENCE, 2016, 353 (6299)
  • [2] Nucleic Acid Detection Using CRISPR/Cas Biosensing Technologies
    Aman, Rashid
    Mahas, Ahmed
    Mahfouz, Magdy
    [J]. ACS SYNTHETIC BIOLOGY, 2020, 9 (06): : 1226 - 1233
  • [3] CRISPR-Cas14 is now part of the artillery for gene editing and molecular diagnostic
    Aquino-Jarquin, Guillermo
    [J]. NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2019, 18 : 428 - 431
  • [4] Streamlined inactivation, amplification, and Cas13-based detection of SARS-CoV-2
    Arizti-Sanz, Jon
    Freije, Catherine A.
    Stanton, Alexandra C.
    Petros, Brittany A.
    Boehm, Chloe K.
    Siddiqui, Sameed
    Shaw, Bennett M.
    Adams, Gordon
    Kosoko-Thoroddsen, Tinna-Solveig F.
    Kemball, Molly E.
    Uwanibe, Jessica N.
    Ajogbasile, Fehintola V.
    Eromon, Philomena E.
    Gross, Robin
    Wronka, Loni
    Caviness, Katie
    Hensley, Lisa E.
    Bergman, Nicholas H.
    MacInnis, Bronwyn L.
    Happi, Christian T.
    Lemieux, Jacob E.
    Sabeti, Pardis C.
    Myhrvold, Cameron
    [J]. NATURE COMMUNICATIONS, 2020, 11 (01)
  • [5] The CRISPR/Cas9 system and its applications in crop genome editing
    Bao, Aili
    Burritt, David J.
    Chen, Haifeng
    Zhou, Xinan
    Cao, Dong
    Lam-Son Phan Tran
    [J]. CRITICAL REVIEWS IN BIOTECHNOLOGY, 2019, 39 (03) : 321 - 336
  • [6] CRISPR-based peptide library display and programmable microarray self-assembly for rapid quantitative protein binding assays
    Barber, Karl W.
    Shrock, Ellen
    Elledge, Stephen J.
    [J]. MOLECULAR CELL, 2021, 81 (17) : 3650 - +
  • [7] Small CRISPR RNAs guide antiviral defense in prokaryotes
    Brouns, Stan J. J.
    Jore, Matthijs M.
    Lundgren, Magnus
    Westra, Edze R.
    Slijkhuis, Rik J. H.
    Snijders, Ambrosius P. L.
    Dickman, Mark J.
    Makarova, Kira S.
    Koonin, Eugene V.
    van der Oost, John
    [J]. SCIENCE, 2008, 321 (5891) : 960 - 964
  • [8] New CRISPR-Cas systems from uncultivated microbes
    Burstein, David
    Harrington, Lucas B.
    Strutt, Steven C.
    Probst, Alexander J.
    Anantharaman, Karthik
    Thomas, Brian C.
    Doudna, Jennifer A.
    Banfield, Jillian F.
    [J]. NATURE, 2017, 542 (7640) : 237 - 241
  • [9] SnapShot: CRISPR-RNA-Guided Adaptive Immune Systems
    Carter, Joshua
    Wiedenheft, Blake
    [J]. CELL, 2015, 163 (01) : 260 - U284
  • [10] CRISPR-Cas12a target binding unleashes indiscriminate single-stranded DNase activity
    Chen, Janice S.
    Ma, Enbo
    Harrington, Lucas B.
    Da Costa, Maria
    Tian, Xinran
    Palefsky, Joel M.
    Doudna, Jennifer A.
    [J]. SCIENCE, 2018, 360 (6387) : 436 - +