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Phage-delivered CRISPR-Cas9 for strain-specific depletion and genomic deletions in the gut microbiome.
Lam, Kathy N; Spanogiannopoulos, Peter; Soto-Perez, Paola; Alexander, Margaret; Nalley, Matthew J; Bisanz, Jordan E; Nayak, Renuka R; Weakley, Allison M; Yu, Feiqiao B; Turnbaugh, Peter J.
Afiliación
  • Lam KN; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Spanogiannopoulos P; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Soto-Perez P; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Alexander M; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Nalley MJ; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Bisanz JE; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Nayak RR; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA.
  • Weakley AM; Chan-Zuckerberg Biohub, San Francisco, CA 94158, USA; Stanford ChEM-H: Chemistry, Engineering and Medicine for Human Health, Stanford University, Stanford, CA 94305, USA.
  • Yu FB; Chan-Zuckerberg Biohub, San Francisco, CA 94158, USA.
  • Turnbaugh PJ; Department of Microbiology & Immunology, University of California, San Francisco, San Francisco, CA 94143, USA; Chan-Zuckerberg Biohub, San Francisco, CA 94158, USA. Electronic address: peter.turnbaugh@ucsf.edu.
Cell Rep ; 37(5): 109930, 2021 11 02.
Article en En | MEDLINE | ID: mdl-34731631
Mechanistic insights into the role of the human microbiome in the predisposition to and treatment of disease are limited by the lack of methods to precisely add or remove microbial strains or genes from complex communities. Here, we demonstrate that engineered bacteriophage M13 can be used to deliver DNA to Escherichia coli within the mouse gastrointestinal (GI) tract. Delivery of a programmable exogenous CRISPR-Cas9 system enables the strain-specific depletion of fluorescently marked isogenic strains during competitive colonization and genomic deletions that encompass the target gene in mice colonized with a single strain. Multiple mechanisms allow E. coli to escape targeting, including loss of the CRISPR array or even the entire CRISPR-Cas9 system. These results provide a robust and experimentally tractable platform for microbiome editing, a foundation for the refinement of this approach to increase targeting efficiency, and a proof of concept for the extension to other phage-bacterial pairs of interest.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Contexto en salud: 3_ND Problema de salud: 3_neglected_diseases / 3_zoonosis Asunto principal: Deleción Cromosómica / Cromosomas Bacterianos / Bacteriófago M13 / Escherichia coli / Repeticiones Palindrómicas Cortas Agrupadas y Regularmente Espaciadas / Sistemas CRISPR-Cas / Microbioma Gastrointestinal / Edición Génica / Proteína 9 Asociada a CRISPR Límite: Animals Idioma: En Revista: Cell Rep Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Contexto en salud: 3_ND Problema de salud: 3_neglected_diseases / 3_zoonosis Asunto principal: Deleción Cromosómica / Cromosomas Bacterianos / Bacteriófago M13 / Escherichia coli / Repeticiones Palindrómicas Cortas Agrupadas y Regularmente Espaciadas / Sistemas CRISPR-Cas / Microbioma Gastrointestinal / Edición Génica / Proteína 9 Asociada a CRISPR Límite: Animals Idioma: En Revista: Cell Rep Año: 2021 Tipo del documento: Article País de afiliación: Estados Unidos
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