Receptor-mediated delivery of engineered nucleases for genome modification
Author(s) -
Zhong Chen,
Lahcen Jaafar,
Davies G. Agyekum,
Haiyan Xiao,
Marlene Wade,
Ravindran Kumaran,
David L. Spector,
Gang Bao,
Matthew H. Porteus,
William S. Dynan,
Steffen E. Meiler
Publication year - 2013
Publication title -
nucleic acids research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 9.008
H-Index - 537
eISSN - 1362-4954
pISSN - 0305-1048
DOI - 10.1093/nar/gkt710
Subject(s) - biology , zinc finger nuclease , nuclease , transcription activator like effector nuclease , genome editing , microbiology and biotechnology , endocytosis , complementary dna , transferrin receptor , gene , genetics , computational biology , genome , receptor
Engineered nucleases, which incise the genome at predetermined sites, have a number of laboratory and clinical applications. There is, however, a need for better methods for controlled intracellular delivery of nucleases. Here, we demonstrate a method for ligand-mediated delivery of zinc finger nucleases (ZFN) proteins using transferrin receptor-mediated endocytosis. Uptake is rapid and efficient in established mammalian cell lines and in primary cells, including mouse and human hematopoietic stem-progenitor cell populations. In contrast to cDNA expression, ZFN protein levels decline rapidly following internalization, affording better temporal control of nuclease activity. We show that transferrin-mediated ZFN uptake leads to site-specific in situ cleavage of the target locus. Additionally, despite the much shorter duration of ZFN activity, the efficiency of gene correction approaches that seen with cDNA-mediated expression. The approach is flexible and general, with the potential for extension to other targeting ligands and nuclease architectures.
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