Cleavage of phage DNA by the Streptococcus thermophilus CRISPR3-Cas system.

PLoS One

Département de Biochimie, de Microbiologie et Bio-Informatiques, Faculté des Sciences et de Génie, Groupe de Recherche en Ecologie Buccale, Université Laval, Québec, Canada.

Published: April 2013

AI Article Synopsis

  • Streptococcus thermophilus has defense mechanisms against foreign nucleic acids, including virus infections, highlighted by the CRISPR-Cas system.
  • Two CRISPR systems (CRISPR1-Cas and CRISPR3-Cas) can block phage infections by cleaving double-stranded DNA (dsDNA) of invading viruses.
  • The presence of both CRISPR systems enhances resistance to phage infection, and their effectiveness is linked to the number of newly acquired spacers in the CRISPR loci.

Article Abstract

Streptococcus thermophilus, similar to other Bacteria and Archaea, has developed defense mechanisms to protect cells against invasion by foreign nucleic acids, such as virus infections and plasmid transformations. One defense system recently described in these organisms is the CRISPR-Cas system (Clustered Regularly Interspaced Short Palindromic Repeats loci coupled to CRISPR-associated genes). Two S. thermophilus CRISPR-Cas systems, CRISPR1-Cas and CRISPR3-Cas, have been shown to actively block phage infection. The CRISPR1-Cas system interferes by cleaving foreign dsDNA entering the cell in a length-specific and orientation-dependant manner. Here, we show that the S. thermophilus CRISPR3-Cas system acts by cleaving phage dsDNA genomes at the same specific position inside the targeted protospacer as observed with the CRISPR1-Cas system. Only one cleavage site was observed in all tested strains. Moreover, we observed that the CRISPR1-Cas and CRISPR3-Cas systems are compatible and, when both systems are present within the same cell, provide increased resistance against phage infection by both cleaving the invading dsDNA. We also determined that overall phage resistance efficiency is correlated to the total number of newly acquired spacers in both CRISPR loci.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC3401199PMC
http://journals.plos.org/plosone/article?id=10.1371/journal.pone.0040913PLOS

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