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Catalytically Active Cas9 Mediates Transcriptional Interference to Facilitate Bacterial Virulence.

Hannah K Ratner | Andrés Escalera-Maurer | Anaïs Le Rhun | Siddharth Jaggavarapu | Jessie E Wozniak | Emily K Crispell | Emmanuelle Charpentier | David S Weiss
Molecular cell | 2019

In addition to defense against foreign DNA, the CRISPR-Cas9 system of Francisella novicida represses expression of an endogenous immunostimulatory lipoprotein. We investigated the specificity and molecular mechanism of this regulation, demonstrating that Cas9 controls a highly specific regulon of four genes that must be repressed for bacterial virulence. Regulation occurs through a protospacer adjacent motif (PAM)-dependent interaction of Cas9 with its endogenous DNA targets, dependent on a non-canonical small RNA (scaRNA) and tracrRNA. The limited complementarity between scaRNA and the endogenous DNA targets precludes cleavage, highlighting the evolution of scaRNA to repress transcription without lethally targeting the chromosome. We show that scaRNA can be reprogrammed to repress other genes, and with engineered, extended complementarity to an exogenous target, the repurposed scaRNA:tracrRNA-FnoCas9 machinery can also direct DNA cleavage. Natural Cas9 transcriptional interference likely represents a broad paradigm of regulatory functionality, which is potentially critical to the physiology of numerous Cas9-encoding pathogenic and commensal organisms.

Pubmed ID: 31256988

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Associated grants

  • Agency: NIH HHS, United States
    Id: P51 OD011132
  • Agency: NIAID NIH HHS, United States
    Id: R01 AI110701
  • Agency: NIAID NIH HHS, United States
    Id: U54 AI057157

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RRID:SCR_001914

Center for advancing scientific understanding and improving the health and well-being of humans and nonhuman primates. The Center conducts research in microbiology and immunology, neurologic diseases, neuropharmacology, behavioral, cognitive and developmental neuroscience, and psychiatric disorders.

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