Achieving the full potential of zinc-finger nucleases (ZFNs) for genome engineering in human cells requires their efficient delivery to the relevant cell types. Here we exploited the infectivity of integrase-defective lentiviral vectors (IDLV) to express ZFNs and provide the template DNA for gene correction in different cell types. IDLV-mediated delivery supported high rates (13-39%) of editing at the IL-2 receptor common gamma-chain gene (IL2RG) across different cell types. IDLVs also mediated site-specific gene addition by a process that required ZFN cleavage and homologous template DNA, thus establishing a platform that can target the insertion of transgenes into a predetermined genomic site. Using IDLV delivery and ZFNs targeting distinct loci, we observed high levels of gene addition (up to 50%) in a panel of human cell lines, as well as human embryonic stem cells (5%), allowing rapid, selection-free isolation of clonogenic cells with the desired genetic modification.

Lombardo A., Beausejour CM., Genovese P., Colleoni S., Lee Y-L., Kim KA, et al. (2007). Gene editing and site-specific gene additino in human stem cells using designed zinc finger nucleases and integrase detective lentiviral vector delivery. NATURE BIOTECHNOLOGY, 25, 1298-1306.

Gene editing and site-specific gene additino in human stem cells using designed zinc finger nucleases and integrase detective lentiviral vector delivery

GALLI, CESARE;
2007

Abstract

Achieving the full potential of zinc-finger nucleases (ZFNs) for genome engineering in human cells requires their efficient delivery to the relevant cell types. Here we exploited the infectivity of integrase-defective lentiviral vectors (IDLV) to express ZFNs and provide the template DNA for gene correction in different cell types. IDLV-mediated delivery supported high rates (13-39%) of editing at the IL-2 receptor common gamma-chain gene (IL2RG) across different cell types. IDLVs also mediated site-specific gene addition by a process that required ZFN cleavage and homologous template DNA, thus establishing a platform that can target the insertion of transgenes into a predetermined genomic site. Using IDLV delivery and ZFNs targeting distinct loci, we observed high levels of gene addition (up to 50%) in a panel of human cell lines, as well as human embryonic stem cells (5%), allowing rapid, selection-free isolation of clonogenic cells with the desired genetic modification.
2007
Lombardo A., Beausejour CM., Genovese P., Colleoni S., Lee Y-L., Kim KA, et al. (2007). Gene editing and site-specific gene additino in human stem cells using designed zinc finger nucleases and integrase detective lentiviral vector delivery. NATURE BIOTECHNOLOGY, 25, 1298-1306.
Lombardo A.; Beausejour CM.; Genovese P.; Colleoni S.; Lee Y-L.; Kim KA; Ando D.; Urnov F.; Galli C.; Gregory PD.; Holmes MC.; Naldini L.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/55575
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