Enhancement of MSH receptor- and GAL4-mediated gene transfer by switching the nuclear import pathway
Open Access
- 1 January 2001
- journal article
- research article
- Published by Springer Nature in Gene Therapy
- Vol. 8 (2) , 166-171
- https://doi.org/10.1038/sj.gt.3301366
Abstract
Efficient nuclear delivery of plasmid DNA represents a major barrier in nonviral gene transfer. One approach has been to use DNA-binding proteins such as GAL4 from yeast as DNA carriers with nuclear targeting properties. We recently showed, however, that GAL4 is inefficient in targeting DNA to the nucleus because its DNA-binding and nuclear targeting activities are mutually exclusive, which relates to the fact that GAL4 nuclear import occurs via a novel pathway. Here, we ‘switch’ this pathway to a more conventional one by adding a modified poly-lysine to which an optimized nuclear targeting signal, based on that of the SV40 large T-antigen, is linked. We also use a chimeric GAL4-α-melanocyte stimulating hormone (MSH) fusion protein to enable gene transfer to cells expressing the MSH receptor. Switching the nuclear import pathway of the transfecting complex significantly enhances receptor-mediated gene transfer through enabling interaction with desired components of the cellular nuclear import machinery. The present study represents the first demonstration that nuclear targeting signals can enhance receptor-mediated gene delivery, the approaches having important relevance to research and clinical applications, such as in generating transgenic or knock-out animals, or in gene therapy.Keywords
This publication has 27 references indexed in Scilit:
- Enhancement of Polylysine-Mediated Transferrinfection by Nuclear Localization Sequences: Polylysine Does Not Function as a Nuclear Localization SequenceHuman Gene Therapy, 1999
- Efficient Gene Delivery into Human Dendritic Cells by Adenovirus Polyethylenimine and Mannose Polyethylenimine TransfectionHuman Gene Therapy, 1999
- Efficient Gene Transfer by Histidylated Polylysine/pDNA ComplexesBioconjugate Chemistry, 1999
- High-Efficiency Transfer of Cystic Fibrosis Transmembrane Conductance Regulator cDNA into Cystic Fibrosis Airway Cells in Culture Using Lactosylated Polylysine as a VectorHuman Gene Therapy, 1999
- Polycation-based DNA complexes for tumor-targeted gene deliveryin vivoThe Journal of Gene Medicine, 1999
- In Vitro Gene Delivery to Hepatocytes with Galactosylated PolyethylenimineBioconjugate Chemistry, 1997
- Glycerol and Polylysine Synergize in Their Ability to Rupture Vesicular Membranes: A Mechanism for Increased Transferrin–Polylysine-Mediated Gene Transfer1Experimental Cell Research, 1997
- Targeting DNA to Cells with Basic Fibroblast Growth Factor (FGF2)Journal of Biological Chemistry, 1996
- Receptor-mediated gene transfer into macrophages.Proceedings of the National Academy of Sciences, 1996
- Influenza virus hemagglutinin HA-2 N-terminal fusogenic peptides augment gene transfer by transferrin-polylysine-DNA complexes: toward a synthetic virus-like gene-transfer vehicle.Proceedings of the National Academy of Sciences, 1992