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Stem cell-derived clade F AAVs mediate high-efficiency homologous recombination-based genome editing.
Smith, Laura J; Wright, Jason; Clark, Gabriella; Ul-Hasan, Taihra; Jin, Xiangyang; Fong, Abigail; Chandra, Manasa; St Martin, Thia; Rubin, Hillard; Knowlton, David; Ellsworth, Jeff L; Fong, Yuman; Wong, Kamehameha K; Chatterjee, Saswati.
Afiliación
  • Smith LJ; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • Wright J; Homology Medicines, Inc., Bedford, MA 01730.
  • Clark G; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • Ul-Hasan T; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • Jin X; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • Fong A; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • Chandra M; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • St Martin T; Homology Medicines, Inc., Bedford, MA 01730.
  • Rubin H; Homology Medicines, Inc., Bedford, MA 01730.
  • Knowlton D; Homology Medicines, Inc., Bedford, MA 01730.
  • Ellsworth JL; Homology Medicines, Inc., Bedford, MA 01730.
  • Fong Y; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010.
  • Wong KK; Department of Hematology and Stem Cell Transplantation, City of Hope Medical Center, Duarte, CA 91010.
  • Chatterjee S; Department of Surgery, Beckman Research Institute, City of Hope Medical Center, Duarte, CA 91010; schatterjee@coh.org.
Proc Natl Acad Sci U S A ; 115(31): E7379-E7388, 2018 07 31.
Article en En | MEDLINE | ID: mdl-30018062
ABSTRACT
The precise correction of genetic mutations at the nucleotide level is an attractive permanent therapeutic strategy for human disease. However, despite significant progress, challenges to efficient and accurate genome editing persist. Here, we report a genome editing platform based upon a class of hematopoietic stem cell (HSC)-derived clade F adeno-associated virus (AAV), which does not require prior nuclease-mediated DNA breaks and functions exclusively through BRCA2-dependent homologous recombination. Genome editing is guided by complementary homology arms and is highly accurate and seamless, with no evidence of on-target mutations, including insertion/deletions or inclusion of AAV inverted terminal repeats. Efficient genome editing was demonstrated at different loci within the human genome, including a safe harbor locus, AAVS1, and the therapeutically relevant IL2RG gene, and at the murine Rosa26 locus. HSC-derived AAV vector (AAVHSC)-mediated genome editing was robust in primary human cells, including CD34+ cells, adult liver, hepatic endothelial cells, and myocytes. Importantly, high-efficiency gene editing was achieved in vivo upon a single i.v. injection of AAVHSC editing vectors in mice. Thus, clade F AAV-mediated genome editing represents a promising, highly efficient, precise, single-component approach that enables the development of therapeutic in vivo genome editing for the treatment of a multitude of human gene-based diseases.
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Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Células Madre Hematopoyéticas / Dependovirus / Recombinación Homóloga / Edición Génica Límite: Humans Idioma: En Revista: Proc Natl Acad Sci U S A Año: 2018 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Células Madre Hematopoyéticas / Dependovirus / Recombinación Homóloga / Edición Génica Límite: Humans Idioma: En Revista: Proc Natl Acad Sci U S A Año: 2018 Tipo del documento: Article