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Lactococcus lactis type III-A CRISPR-Cas system cleaves bacteriophage RNA.


ABSTRACT: CRISPR-Cas defends microbial cells against invading nucleic acids including viral genomes. Recent studies have shown that type III-A CRISPR-Cas systems target both RNA and DNA in a transcription-dependent manner. We previously found a type III-A system on a conjugative plasmid in Lactococcus lactis which provided resistance against virulent phages of the Siphoviridae family. Its naturally occurring spacers are oriented to generate crRNAs complementary to target phage mRNA, suggesting transcription-dependent targeting. Here, we show that only constructs whose spacers produce crRNAs complementary to the phage mRNA confer phage resistance in L. lactis. In vivo nucleic acid cleavage assays showed that cleavage of phage dsDNA genome was not detected within phage-infected L. lactis cells. On the other hand, Northern blots indicated that the lactococcal CRISPR-Cas cleaves phage mRNA in vivo. These results cannot exclude that single-stranded phage DNA is not being targeted, but phage DNA replication has been shown to be impaired.

SUBMITTER: Millen AM 

PROVIDER: S-EPMC6546414 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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Lactococcus lactis type III-A CRISPR-Cas system cleaves bacteriophage RNA.

Millen Anne M AM   Samson Julie E JE   Tremblay Denise M DM   Magadán Alfonso H AH   Rousseau Geneviève M GM   Moineau Sylvain S   Romero Dennis A DA  

RNA biology 20181002 4


CRISPR-Cas defends microbial cells against invading nucleic acids including viral genomes. Recent studies have shown that type III-A CRISPR-Cas systems target both RNA and DNA in a transcription-dependent manner. We previously found a type III-A system on a conjugative plasmid in Lactococcus lactis which provided resistance against virulent phages of the Siphoviridae family. Its naturally occurring spacers are oriented to generate crRNAs complementary to target phage mRNA, suggesting transcripti  ...[more]

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