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      Escherichia coli Cas1/2 Endonuclease Complex Modifies Self-Targeting CRISPR/Cascade Spacers Reducing Silencing Guide Stability.

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          Abstract

          CRISPR-based interference has become common in various applications from genetic circuits to dynamic metabolic control. In E. coli, the native CRISPR Cascade system can be utilized for silencing by deletion of the cas3 nuclease along with expression of guide RNA arrays, where multiple genes can be silenced from a single transcript. We notice the loss of spacer sequences from guide arrays utilized for dynamic silencing. We report that unstable guide arrays are due to expression of the Cas1/2 endonuclease complex. We propose a model wherein basal Cas1/2 endonuclease activity results in the loss of spacers from guide arrays. Subsequently, mutant guide arrays can be amplified through selection. Replacing a constitutive promoter driving Cascade complex expression with a tightly controlled inducible promoter improves guide array stability, while minimizing leaky gene silencing. Additionally, these results demonstrate the potential of Cas1/2 mediated guide deletion as a mechanism to avoid CRISPR based autoimmunity.

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          Author and article information

          Journal
          ACS Synth Biol
          ACS synthetic biology
          American Chemical Society (ACS)
          2161-5063
          2161-5063
          Jan 15 2021
          : 10
          : 1
          Affiliations
          [1 ] Department of Biomedical Engineering, Duke University, Durham, North Carolina 27708, United States.
          [2 ] DMC Biotechnologies, Inc., Durham, North Carolina 27701, United States.
          [3 ] Department of Chemistry, Duke University, Durham, North Carolina 27708, United States.
          Article
          10.1021/acssynbio.0c00398
          33331764
          4337bbc0-eedc-43e4-8a7d-e23def3a73d1
          History

          CRISPR interference,guide stability,Cascade,Cas2,Cas1,silencing
          CRISPR interference, guide stability, Cascade, Cas2, Cas1, silencing

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