CRISPR Provides Acquired Resistance Against Viruses in Prokaryotes
CRISPR обеспечивает приобретённую устойчивость против вирусов у прокариот
2007-03-22
SCID: 54.1/8w456eum
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CRISPRcas genesclustered regularly interspaced short palindromic repeatsphage-resistance phenotypespacers derived from phage genomic sequences
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Abstract (AI)
Clustered regularly interspaced short palindromic repeats (CRISPR) are a distinctive feature of the genomes of most Bacteria and Archaea and are thought to be involved in resistance to bacteriophages. We found that, after viral challenge, bacteria integrated new spacers derived from phage genomic sequences. Removal or addition of particular spacers modified the phage-resistance phenotype of the cell. Thus, CRISPR, together with associated cas genes, provided resistance against phages, and resistance specificity is determined by spacer-phage sequence similarity.
Key Findings
1
After viral challenge, bacteria integrate new spacers derived from phage genomic sequences into CRISPR arrays.
2
Bacteria and Archaea contain CRISPR loci that are involved in resistance to bacteriophages.
3
CRISPR loci together with associated cas genes provide acquired resistance against phages.
4
Removal or addition of specific spacers alters the phage-resistance phenotype of the cell.
5
Resistance specificity is determined by sequence similarity between CRISPR spacers and phage genomes.
Research Object
CRISPR loci and associated cas genes in Bacteria and Archaea
Research Subject
Acquired phage resistance mediated by integration of new spacers and spacer-phage sequence-specific determination of resistance phenotype
Publication Details
Publication Date
2007-03-22
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