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Prime editing for functional repair in patient-derived disease models.
Schene, Imre F; Joore, Indi P; Oka, Rurika; Mokry, Michal; van Vugt, Anke H M; van Boxtel, Ruben; van der Doef, Hubert P J; van der Laan, Luc J W; Verstegen, Monique M A; van Hasselt, Peter M; Nieuwenhuis, Edward E S; Fuchs, Sabine A.
Afiliação
  • Schene IF; Division of Pediatric Gastroenterology, Wilhelmina Children's Hospital, University Medical Center Utrecht, Lundlaan 6, 3584, EA, Utrecht, the Netherlands.
  • Joore IP; Department of Metabolic Diseases, Wilhelmina Children's Hospital, University Medical Center Utrecht, Lundlaan 6, 3584, EA, Utrecht, the Netherlands.
  • Oka R; Regenerative Medicine Center Utrecht, Uppsalalaan 8, 3584, CT, Utrecht, the Netherlands.
  • Mokry M; Department of Metabolic Diseases, Wilhelmina Children's Hospital, University Medical Center Utrecht, Lundlaan 6, 3584, EA, Utrecht, the Netherlands.
  • van Vugt AHM; Regenerative Medicine Center Utrecht, Uppsalalaan 8, 3584, CT, Utrecht, the Netherlands.
  • van Boxtel R; Princess Maxima Center, 3584, CS, Utrecht, the Netherlands.
  • van der Doef HPJ; Oncode Institute, Princess Maxima Center, 3584, CS, Utrecht, the Netherlands.
  • van der Laan LJW; Division of Pediatric Gastroenterology, Wilhelmina Children's Hospital, University Medical Center Utrecht, Lundlaan 6, 3584, EA, Utrecht, the Netherlands.
  • Verstegen MMA; Division of Pediatric Gastroenterology, Wilhelmina Children's Hospital, University Medical Center Utrecht, Lundlaan 6, 3584, EA, Utrecht, the Netherlands.
  • van Hasselt PM; Regenerative Medicine Center Utrecht, Uppsalalaan 8, 3584, CT, Utrecht, the Netherlands.
  • Nieuwenhuis EES; Princess Maxima Center, 3584, CS, Utrecht, the Netherlands.
  • Fuchs SA; Oncode Institute, Princess Maxima Center, 3584, CS, Utrecht, the Netherlands.
Nat Commun ; 11(1): 5352, 2020 10 23.
Article em En | MEDLINE | ID: mdl-33097693
ABSTRACT
Prime editing is a recent genome editing technology using fusion proteins of Cas9-nickase and reverse transcriptase, that holds promise to correct the vast majority of genetic defects. Here, we develop prime editing for primary adult stem cells grown in organoid culture models. First, we generate precise in-frame deletions in the gene encoding ß-catenin (CTNNB1) that result in proliferation independent of Wnt-stimuli, mimicking a mechanism of the development of liver cancer. Moreover, prime editing functionally recovers disease-causing mutations in intestinal organoids from patients with DGAT1-deficiency and liver organoids from a patient with Wilson disease (ATP7B). Prime editing is as efficient in 3D grown organoids as in 2D grown cell lines and offers greater precision than Cas9-mediated homology directed repair (HDR). Base editing remains more reliable than prime editing but is restricted to a subgroup of pathogenic mutations. Whole-genome sequencing of four prime-edited clonal organoid lines reveals absence of genome-wide off-target effects underscoring therapeutic potential of this versatile and precise gene editing strategy.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Organoides / Beta Catenina / Edição de Genes Limite: Humans Idioma: En Revista: Nat Commun Assunto da revista: BIOLOGIA / CIENCIA Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Holanda

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Organoides / Beta Catenina / Edição de Genes Limite: Humans Idioma: En Revista: Nat Commun Assunto da revista: BIOLOGIA / CIENCIA Ano de publicação: 2020 Tipo de documento: Article País de afiliação: Holanda