Original Article
Gene Therapy (2008) 15, 1411–1423; doi:10.1038/gt.2008.90; published online 22 May 2008
Development of optimal bicistronic lentiviral vectors facilitates high-level TCR gene expression and robust tumor cell recognition
S Yang1, C J Cohen1, P D Peng1, Y Zhao1, L Cassard1, Z Yu1, Z Zheng1, S Jones1, N P Restifo1, S A Rosenberg1 and R A Morgan1
1Surgery Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA
Correspondence: Dr RA Morgan, Surgery Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, 10 Center Drive, Building 10, CRC 3W-3864, Bethesda, MD 20892, USA. E-mail: rmorgan@mail.nih.gov
Received 7 February 2008; Revised 25 March 2008; Accepted 1 April 2008; Published online 22 May 2008.
Abstract
In human gene therapy applications, lentiviral vectors may have advantages over
-retroviral vectors in several areas, including the ability to transduce nondividing cells, resistance to gene silencing and a potentially safer integration site profile. However, unlike
-retroviral vectors it has been problematic to drive the expression of multiple genes efficiently and coordinately with approaches such as internal ribosome entry sites or dual promoters. Using different 2A peptides, lentiviral vectors expressing two-gene T-cell receptors directed against the melanoma differentiation antigens gp100 and MART-1 were constructed. We demonstrated that addition of amino-acid spacer sequences (GSG or SGSG) before the 2A sequence is a prerequisite for efficient synthesis of biologically active T-cell receptors and that addition of a furin cleavage site followed by a V5 peptide tag yielded optimal T-cell receptor gene expression. Furthermore, we determined that the furin cleavage site was recognized in lymphocytes and accounted for removal of residual 2A peptides at the post-translational level with an efficiency of 20–30%, which could not be increased by addition of multiple furin cleavage sites. The novel bicistronic lentiviral vector developed herein afforded robust anti-melanoma activities to engineered peripheral blood lymphocytes, including cytokine secretion, cell proliferation and lytic activity. Such optimal vectors may have immediate applications in cancer gene therapy.
Keywords:
T-cell receptor, adoptive immunotherapy, tumor immunity, lentivirus, 2A peptide
MORE ARTICLES LIKE THIS
These links to content published by NPG are automatically generated
RESEARCH
High-Efficiency Transfection of Primary Human and Mouse T Lymphocytes Using RNA Electroporation
Molecular Therapy Original Article
Coordinate dual-gene transgenesis by lentiviral vectors carrying synthetic bidirectional promoters
Nature Biotechnology Research (01 Jan 2005)
Cancer Gene Therapy Original Article
Rapid analysis of T-cell selection in vivo using T cell?receptor retrogenic mice
Nature Methods Article (01 Mar 2006)
