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Precise correction of a spectrum of ß-thalassemia mutations in coding and non-coding regions by base editors.
Prasad, Kirti; Devaraju, Nivedhitha; George, Anila; Ravi, Nithin Sam; Paul, Joshua; Mahalingam, Gokulnath; Rajendiran, Vignesh; Panigrahi, Lokesh; Venkatesan, Vigneshwaran; Lakhotiya, Kartik; Periyasami, Yogapriya; Pai, Aswin Anand; Nakamura, Yukio; Kurita, Ryo; Balasubramanian, Poonkuzhali; Thangavel, Saravanabhavan; Velayudhan, Shaji R; Newby, Gregory A; Marepally, Srujan; Srivastava, Alok; Mohankumar, Kumarasamypet M.
Afiliación
  • Prasad K; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Devaraju N; Manipal Academy of Higher Education, Karnataka 576104, India.
  • George A; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Ravi NS; Manipal Academy of Higher Education, Karnataka 576104, India.
  • Paul J; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Mahalingam G; Sree Chitra Tirunal Institute for Medical Sciences and Technology, Thiruvananthapuram, Kerala 695 011, India.
  • Rajendiran V; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Panigrahi L; Sree Chitra Tirunal Institute for Medical Sciences and Technology, Thiruvananthapuram, Kerala 695 011, India.
  • Venkatesan V; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Lakhotiya K; Manipal Academy of Higher Education, Karnataka 576104, India.
  • Periyasami Y; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Pai AA; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Nakamura Y; Sree Chitra Tirunal Institute for Medical Sciences and Technology, Thiruvananthapuram, Kerala 695 011, India.
  • Kurita R; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Balasubramanian P; Manipal Academy of Higher Education, Karnataka 576104, India.
  • Thangavel S; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Velayudhan SR; Manipal Academy of Higher Education, Karnataka 576104, India.
  • Newby GA; Molecular Cardiology Research Institute, Tufts Medical Center, 800 Washington Street, Boston MA 02111, USA.
  • Marepally S; Centre for Stem Cell Research (a Unit of inStem, Bengaluru), Christian Medical College Campus, Bagayam, Vellore, Tamil Nadu 632002, India.
  • Srivastava A; Sree Chitra Tirunal Institute for Medical Sciences and Technology, Thiruvananthapuram, Kerala 695 011, India.
  • Mohankumar KM; Department of Haematology, Christian Medical College & Hospital, Vellore 632 004, India.
Mol Ther Nucleic Acids ; 35(2): 102205, 2024 Jun 11.
Article en En | MEDLINE | ID: mdl-38817682
ABSTRACT
ß-thalassemia/HbE results from mutations in the ß-globin locus that impede the production of functional adult hemoglobin. Base editors (BEs) could facilitate the correction of the point mutations with minimal or no indel creation, but its efficiency and bystander editing for the correction of ß-thalassemia mutations in coding and non-coding regions remains unexplored. Here, we screened BE variants in HUDEP-2 cells for their ability to correct a spectrum of ß-thalassemia mutations that were integrated into the genome as fragments of HBB. The identified targets were introduced into their endogenous genomic location using BEs and Cas9/homology-directed repair (HDR) to create cellular models with ß-thalassemia/HbE. These ß-thalassemia/HbE models were then used to assess the efficiency of correction in the native locus and functional ß-globin restoration. Most bystander edits produced near target sites did not interfere with adult hemoglobin expression and are not predicted to be pathogenic. Further, the effectiveness of BE was validated for the correction of the pathogenic HbE variant in severe ß0/ßE-thalassaemia patient cells. Overall, our study establishes a novel platform to screen and select optimal BE tools for therapeutic genome editing by demonstrating the precise, efficient, and scarless correction of pathogenic point mutations spanning multiple regions of HBB including the promoter, intron, and exons.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Mol Ther Nucleic Acids Año: 2024 Tipo del documento: Article País de afiliación: India

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Mol Ther Nucleic Acids Año: 2024 Tipo del documento: Article País de afiliación: India
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