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Anti-CRISPR

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Anti-CRISPR (Anti-Clustered Regularly Interspaced Short Palindromic Repeats or Acr) is a group of proteins found in phages, that inhibit the normal activity of CRISPR-Cas, the immune system of certain bacteria. CRISPR consists of genomic sequences that can be found in prokaryotic organisms, that come from bacteriophages that infected the bacteria beforehand, and are used to defend the cell from further viral attacks. Anti-CRISPR results from an evolutionary process occurred in phages in order to avoid having their genomes destroyed by the prokaryotic cells that they will infect.

~21 min read

Encyclopedic overview

20 sections
Contents
  • History
  • Types
  • Structure
  • AcrIIA4
  • AcrF1
  • Function
  • Avoiding destruction of the phage DNA
  • Phage-phage cooperation
  • Phage immune evasion
  • Mechanisms
  • CrRNA loading interference
  • DNA binding blockage
  • DNA cleavage prevention
  • Applications
  • Reducing CRISPR-Cas9 off-target cuts
  • Avoiding ecological consequences
  • Detect presence of Cas9 in a sample
  • Phage therapy
  • See also
  • References

Anti-CRISPR (Anti-Clustered Regularly Interspaced Short Palindromic Repeats or Acr) is a group of proteins found in phages, that inhibit the normal activity of CRISPR-Cas, the immune system of certain bacteria. CRISPR consists of genomic sequences that can be found in prokaryotic organisms, that come from bacteriophages that infected the bacteria beforehand, and are used to defend the cell from further viral attacks. Anti-CRISPR results from an evolutionary process occurred in phages in order to avoid having their genomes destroyed by the prokaryotic cells that they will infect.

Before the discovery of this type of family proteins, the acquisition of mutations was the only way known that phages could use to avoid CRISPR-Cas mediated shattering, by reducing the binding affinity of the phage and CRISPR. Nonetheless, bacteria have mechanisms to retarget the mutant bacteriophage, a process that it is called "priming adaptation". So, as far as researchers currently know, anti-CRISPR is the most effective way to ensure the survival of phages throughout the infection process of bacteria.

Excerpted from Wikipedia’s “Anti-CRISPR” article, available under the CC BY-SA 4.0 licence.

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