Chimeric Measles Viruses with a Foreign Envelope

Author:

Spielhofer Pius1,Bächi Thomas2,Fehr Thomas3,Christiansen Gudrun1,Cattaneo Roberto1,Kaelin Karin1,Billeter Martin A.1,Naim Hussein Y.1

Affiliation:

1. Institute of Molecular Biology Division I1 and

2. University of Zürich, and Elekronenmikroskopisches Zentrallaboratorium,2 Zürich, Switzerland

3. Institute for Experimental Immunology, Department of Pathology,3

Abstract

ABSTRACT Measles virus (MV) and vesicular stomatitis virus (VSV) are both members of the Mononegavirales but are only distantly related. We generated two genetically stable chimeric viruses. In MGV, the reading frames of the MV envelope glycoproteins H and F were substituted by a single reading frame encoding the VSV G glycoprotein; MG/FV is similar but encodes a G/F hybrid in which the VSV G cytoplasmic tail was replaced by that of MV F. In contrast to MG/FV, MGV virions do not contain the MV matrix (M) protein. This demonstrates that virus assembly is possible in the absence of M; conversely, the cytoplasmic domain of F allows incorporation of M and enhances assembly. The formation of chimeric viruses was substantially delayed and the titers obtained were reduced about 50-fold in comparison to standard MV. In the novel chimeras, transcription and replication are mediated by the MV ribonucleoproteins but the envelope glycoproteins dictate the host range. Mice immunized with the chimeric viruses were protected against lethal doses of wild-type VSV. These findings suggest that it is feasible to construct MV variants bearing a variety of different envelopes for use as vaccines or for gene therapeutic purposes.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

Reference52 articles.

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