Redirecting Coronavirus to a Nonnative Receptor through a Virus-Encoded Targeting Adapter
Open Access
- 1 February 2006
- journal article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 80 (3) , 1250-1260
- https://doi.org/10.1128/jvi.80.3.1250-1260.2006
Abstract
Murine hepatitis coronavirus (MHV)-A59 infection depends on the interaction of its spike (S) protein with the cellular receptor mCEACAM1a present on murine cells. Human cells lack this receptor and are therefore not susceptible to MHV. Specific alleviation of the tropism barrier by redirecting MHV to a tumor-specific receptor could lead to a virus with appealing properties for tumor therapy. To demonstrate that MHV can be retargeted to a nonnative receptor on human cells, we produced bispecific adapter proteins composed of the N-terminal D1 domain of mCEACAM1a linked to a short targeting peptide, the six-amino-acid His tag. Preincubation of MHV with the adapter proteins and subsequent inoculation of human cells expressing an artificial His receptor resulted in infection of these otherwise nonsusceptible cells and led to subsequent production of progeny virus. To generate a self-targeted virus able to establish multiround infection of the target cells, we subsequently incorporated the gene encoding the bispecific adapter protein as an additional expression cassette into the MHV genome through targeted RNA recombination. When inoculated onto murine LR7 cells, the resulting recombinant virus indeed expressed the adapter protein. Furthermore, inoculation of human target cells with the virus resulted in a His receptor-specific infection that was multiround. Extensive cell-cell fusion and rapid cell killing of infected target cells was observed. Our results show that MHV can be genetically redirected via adapters composed of the S protein binding part of mCEACAM1a and a targeting peptide recognizing a nonnative receptor expressed on human cells, consequently leading to rapid cell death. The results provide interesting leads for further investigations of the use of coronaviruses as antitumor agents.Keywords
This publication has 43 references indexed in Scilit:
- Soluble Receptor-Mediated Targeting of Mouse Hepatitis Coronavirus to the Human Epidermal Growth Factor ReceptorJournal of Virology, 2005
- Targeting non-human coronaviruses to human cancer cells using a bispecific single-chain antibodyGene Therapy, 2005
- Oncolytic viruses for the treatment of cancer: current strategies and clinical trialsDrug Discovery Today, 2004
- The Coronavirus Spike Protein Is a Class I Virus Fusion Protein: Structural and Functional Characterization of the Fusion Core ComplexJournal of Virology, 2003
- Production of an EGFR targeting molecule from a conditionally replicating adenovirus impairs its oncolytic potentialCancer Gene Therapy, 2003
- Oncolytic measles viruses displaying a single-chain antibody against CD38, a myeloma cell markerBlood, 2003
- Conformational Changes in the Spike Glycoprotein of Murine Coronavirus Are Induced at 37°C either by Soluble Murine CEACAM1 Receptors or by pH 8Journal of Virology, 2003
- Receptor-Induced Conformational Changes of Murine Coronavirus Spike ProteinJournal of Virology, 2002
- Targeting Adenoviral Vectors by Using the Extracellular Domain of the Coxsackie-Adenovirus Receptor: Improved Potency via TrimerizationJournal of Virology, 2002
- Difference in virus-binding activity of two distinct receptor proteins for mouse hepatitis virusJournal of General Virology, 1996