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Crystal structure of a CRISPR RNA-guided surveillance complex bound to a ssDNA target
by
Héroux, Annie
, Bailey, Scott
, Mulepati, Sabin
in
adaptive immunity
/ bacteria
/ Bacteriology
/ Cascades
/ Crystal structure
/ Deoxyribonucleic acid
/ DNA
/ E coli
/ Escherichia coli
/ Immune system
/ monitoring
/ Nucleic acids
/ nucleotide sequences
/ Prokaryotes
/ Proteins
/ Ribonucleic acid
/ Ribonucleic acids
/ RNA
/ single-stranded DNA
/ Strands
/ Viruses
2014
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Crystal structure of a CRISPR RNA-guided surveillance complex bound to a ssDNA target
by
Héroux, Annie
, Bailey, Scott
, Mulepati, Sabin
in
adaptive immunity
/ bacteria
/ Bacteriology
/ Cascades
/ Crystal structure
/ Deoxyribonucleic acid
/ DNA
/ E coli
/ Escherichia coli
/ Immune system
/ monitoring
/ Nucleic acids
/ nucleotide sequences
/ Prokaryotes
/ Proteins
/ Ribonucleic acid
/ Ribonucleic acids
/ RNA
/ single-stranded DNA
/ Strands
/ Viruses
2014
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Do you wish to request the book?
Crystal structure of a CRISPR RNA-guided surveillance complex bound to a ssDNA target
by
Héroux, Annie
, Bailey, Scott
, Mulepati, Sabin
in
adaptive immunity
/ bacteria
/ Bacteriology
/ Cascades
/ Crystal structure
/ Deoxyribonucleic acid
/ DNA
/ E coli
/ Escherichia coli
/ Immune system
/ monitoring
/ Nucleic acids
/ nucleotide sequences
/ Prokaryotes
/ Proteins
/ Ribonucleic acid
/ Ribonucleic acids
/ RNA
/ single-stranded DNA
/ Strands
/ Viruses
2014
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Crystal structure of a CRISPR RNA-guided surveillance complex bound to a ssDNA target
Journal Article
Crystal structure of a CRISPR RNA-guided surveillance complex bound to a ssDNA target
2014
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Overview
In prokaryotes, RNA derived from type I and type III CRISPR loci direct large ribonucleoprotein complexes to destroy invading bacteriophage and plasmids. In Escherichia coli, this 405-kilodalton complex is called Cascade. We report the crystal structure of Cascade bound to a single-stranded DNA (ssDNA) target at a resolution of 3.03 angstroms. The structure reveals that the CRISPR RNA and target strands do not form a double helix but instead adopt an underwound ribbon-like structure. This noncanonical structure is facilitated by rotation of every sixth nucleotide out of the RNA-DNA hybrid and is stabilized by the highly interlocked organization of protein subunits. These studies provide insight into both the assembly and the activity of this complex and suggest a mechanism to enforce fidelity of target binding.
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