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Efficient genome editing in hematopoietic stem cells with helper-dependent Ad5/35 vectors expressing site-specific endonucleases under microRNA regulation

Cited 49 time in Web of Science Cited 53 time in Scopus
Authors

Saydaminova, Kamola; Ye, Xun; Wang, Hongjie; Richter, Maximilian; Ho, Martin; Chen, HongZhuan; Xu, Ning; Kim, Jin-Soo; Papapetrou, Eirini; Holmes, Michael C.; Gregory, Philip D.; Palmer, Donna; Ng, Philip; Ehrhardt, Anja; Lieber, Andre

Issue Date
2015-04
Publisher
Nature Publishing Group
Citation
Molecular Therapy - Methods and Clinical Development, Vol.2, p. 14057
Abstract
Genome editing with site-specific endonucleases has implications for basic biomedical research as well as for gene therapy. We generated helper-dependent, capsid-modified adenovirus (HD-Ad5/35) vectors for zinc-finger nuclease (ZFN)- or transcription activator-like effector nuclease (TALEN)-mediated genome editing in human CD34+ hematopoietic stem cells (HSCs) from mobilized adult donors. The production of these vectors required that ZFN and TALEN expression in HD-Ad5/35 producer 293-Cre cells was suppressed. To do this, we developed a microRNA (miRNA)-based system for regulation of gene expression based on miRNA expression profiling of 293-Cre and CD34+ cells. Using miR-183-5p and miR-218-5p based regulation of transgene gene -expression, we first produced an HD-Ad5/35 vector expressing a ZFN specific to the HIV coreceptor gene ccr5. We demonstrated that HD-Ad5/35. ZFNmiR vector conferred ccr5 knock out in primitive HSC (i.e., long-term culture initiating cells and NOD/SCID repopulating cells). The ccr5 gene disruption frequency achieved in engrafted HSCs found in the bone marrow of transplanted mice is clinically relevant for HIV therapy considering that these cells can give rise to multiple lineages, including all the lineages that represent targets and reservoirs for HIV. We produced a second HD-Ad5/35 vector expressing a TALEN targeting the DNase hypersensitivity region 2 (HS2) within the globin locus control region. This vector has potential for targeted gene correction in hemoglobinopathies. The miRNA regulated HD-Ad5/35 vector platform for expression of site-specific endonucleases has numerous advantages over currently used vectors as a tool for genome engineering of HSCs for therapeutic purposes.
ISSN
2329-0501
URI
https://hdl.handle.net/10371/165647
DOI
https://doi.org/10.1038/mtm.2014.57
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  • College of Natural Sciences
  • Department of Chemistry
Research Area Biology and Biochemistry

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