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Surveillance and Processing of Foreign DNA by the Escherichia coli CRISPR-Cas System.
Redding, Sy; Sternberg, Samuel H; Marshall, Myles; Gibb, Bryan; Bhat, Prashant; Guegler, Chantal K; Wiedenheft, Blake; Doudna, Jennifer A; Greene, Eric C.
Afiliación
  • Redding S; Department of Chemistry, Columbia University, New York, NY 10027, USA.
  • Sternberg SH; Department of Chemistry, University of California, Berkeley, CA 94720, USA.
  • Marshall M; Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA.
  • Gibb B; Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA.
  • Bhat P; Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720, USA.
  • Guegler CK; Department of Chemistry, University of California, Berkeley, CA 94720, USA.
  • Wiedenheft B; Department of Microbiology and Immunology, Montana State University, Bozeman, MT 59717, USA.
  • Doudna JA; Department of Chemistry, University of California, Berkeley, CA 94720, USA; Department of Molecular and Cell Biology, University of California, Berkeley, CA 94720, USA; Innovative Genomics Initiative, University of California, Berkeley, CA 94720, USA; Howard Hughes Medical Institute, University of C
  • Greene EC; Department of Biochemistry and Molecular Biophysics, Columbia University, New York, NY 10032, USA. Electronic address: ecg2108@cumc.columbia.edu.
Cell ; 163(4): 854-65, 2015 Nov 05.
Article en En | MEDLINE | ID: mdl-26522594
ABSTRACT
CRISPR-Cas adaptive immune systems protect bacteria and archaea against foreign genetic elements. In Escherichia coli, Cascade (CRISPR-associated complex for antiviral defense) is an RNA-guided surveillance complex that binds foreign DNA and recruits Cas3, a trans-acting nuclease helicase for target degradation. Here, we use single-molecule imaging to visualize Cascade and Cas3 binding to foreign DNA targets. Our analysis reveals two distinct pathways dictated by the presence or absence of a protospacer-adjacent motif (PAM). Binding to a protospacer flanked by a PAM recruits a nuclease-active Cas3 for degradation of short single-stranded regions of target DNA, whereas PAM mutations elicit an alternative pathway that recruits a nuclease-inactive Cas3 through a mechanism that is dependent on the Cas1 and Cas2 proteins. These findings explain how target recognition by Cascade can elicit distinct outcomes and support a model for acquisition of new spacer sequences through a mechanism involving processive, ATP-dependent Cas3 translocation along foreign DNA.
Asunto(s)

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: ADN Viral / Bacteriófago lambda / ADN Helicasas / Proteínas de Escherichia coli / Endodesoxirribonucleasas / Endonucleasas / Escherichia coli / Proteínas Asociadas a CRISPR / Sistemas CRISPR-Cas Tipo de estudio: Prognostic_studies / Screening_studies Idioma: En Revista: Cell Año: 2015 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: ADN Viral / Bacteriófago lambda / ADN Helicasas / Proteínas de Escherichia coli / Endodesoxirribonucleasas / Endonucleasas / Escherichia coli / Proteínas Asociadas a CRISPR / Sistemas CRISPR-Cas Tipo de estudio: Prognostic_studies / Screening_studies Idioma: En Revista: Cell Año: 2015 Tipo del documento: Article País de afiliación: Estados Unidos