4.8 Article

Efficient target cleavage by Type V Cas12a effectors programmed with split CRISPR RNA

期刊

NUCLEIC ACIDS RESEARCH
卷 50, 期 2, 页码 1162-1173

出版社

OXFORD UNIV PRESS
DOI: 10.1093/nar/gkab1227

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资金

  1. Russian Foundation of Basic Research [19-29-04101]
  2. IdEx Unistra [ANR-10IDEX-0002]
  3. SFRI-STRATUS project [ANR 20-SFRI0012]
  4. EUR IMCBio [ANR17-EURE-0023]
  5. Grand Est PhD fellowship (France)
  6. Skoltech (Russia)
  7. Ministry of Science and Higher Education of the Russian Federation [075-15-2019-1659, 075-15-2019-1661]
  8. NIH [GM10407]
  9. Skolkovo Institute of Science and Technology

向作者/读者索取更多资源

This study demonstrates that the removal of parts of the CRISPR RNA has minimal effect on the DNA cleavage activity of Cas12a nucleases in vitro. Split CRISPR RNAs can efficiently and specifically catalyze DNA cleavage by Cas12a nucleases in vitro and in human cell extracts. These findings provide insights into the mechanisms of target recognition and cleavage and have implications for the development of diagnostic tests based on Cas12a nucleases.
CRISPR RNAs (crRNAs) that direct target DNA cleavage by Type V Cas12a nucleases consist of constant repeat-derived 5 '-scaffold moiety and variable 3 '-spacer moieties. Here, we demonstrate that removal of most of the 20-nucleotide scaffold has only a slight effect on in vitro target DNA cleavage by a Cas12a ortholog from Acidaminococcus sp. (AsCas12a). In fact, residual cleavage was observed even in the presence of a 20-nucleotide crRNA spacer moiety only. crRNAs split into separate scaffold and spacer RNAs catalyzed highly specific and efficient cleavage of target DNA by AsCas12a in vitro and in lysates of human cells. In addition to dsDNA target cleavage, AsCas12a programmed with split crRNAs also catalyzed specific ssDNA target cleavage and non-specific ssDNA degradation (collateral activity). V-A effector nucleases from Francisella novicida (FnCas12a) and Lachnospiraceae bacterium (LbCas12a) were also functional with split crRNAs. Thus, the ability of V-A effectors to use split crRNAs appears to be a general property. Though higher concentrations of split crRNA components are needed to achieve efficient target cleavage, split crRNAs open new lines of inquiry into the mechanisms of target recognition and cleavage and may stimulate further development of single-tube multiplex and/or parallel diagnostic tests based on Cas12a nucleases.

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