The major goal of the work proposed is to understand the molecular basis of two fundamental processes involved in replication of enveloped animal viruses. These are 1), how viral glycoproteins are targeted to specific membranes where the virus assembles and 2), what interactions among viral components are important to efficient assembly of the virus at these specific membranes. The two viral systems that will be used in these studies are vesicular stomatitis virus (a rhabdovirus) and mouse hepatitis virus (a coronavirus). The approach to be taken includes the use of in vitro mutagenesis and eukaryctic gene expression systems to analyze the protein domains and modifications that are important in the transport of viral proteins to specific membranes and in the assembly of these proteins to specific membranes and in the assembly of these proteins into the virus particle. Both of the viruses to be studied are prototypes of groups that cause significant human disease. An understanding of the molecular basis of virus assembly may suggest ways to interfere specifically with virus replication, and may provide fundamental insight into normal cellular processes. In addition, an understanding of the interactions involved in efficient incorporation of glycoproteins into virus particles may suggest ways to engineer virus particles carrying novel proteins in their membranes. Such particles could be useful in targeting viral vectors to specific tissues.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Method to Extend Research in Time (MERIT) Award (R37)
Project #
5R37AI024345-09
Application #
2062560
Study Section
Special Emphasis Panel (NSS)
Project Start
1987-01-01
Project End
1996-12-31
Budget Start
1995-01-01
Budget End
1995-12-31
Support Year
9
Fiscal Year
1995
Total Cost
Indirect Cost
Name
Yale University
Department
Pathology
Type
Schools of Medicine
DUNS #
082359691
City
New Haven
State
CT
Country
United States
Zip Code
06520
Schlereth, Bernd; Buonocore, Linda; Tietz, Annette et al. (2003) Successful mucosal immunization of cotton rats in the presence of measles virus-specific antibodies depends on degree of attenuation of vaccine vector and virus dose. J Gen Virol 84:2145-51
Buonocore, Linda; Blight, Keril J; Rice, Charles M et al. (2002) Characterization of vesicular stomatitis virus recombinants that express and incorporate high levels of hepatitis C virus glycoproteins. J Virol 76:6865-72
van den Pol, Anthony N; Dalton, Kevin P; Rose, John K (2002) Relative neurotropism of a recombinant rhabdovirus expressing a green fluorescent envelope glycoprotein. J Virol 76:1309-27
Haglund, Karl; Leiner, Ingrid; Kerksiek, Kristen et al. (2002) High-level primary CD8(+) T-cell response to human immunodeficiency virus type 1 gag and env generated by vaccination with recombinant vesicular stomatitis viruses. J Virol 76:2730-8
Kahn, J S; Roberts, A; Weibel, C et al. (2001) Replication-competent or attenuated, nonpropagating vesicular stomatitis viruses expressing respiratory syncytial virus (RSV) antigens protect mice against RSV challenge. J Virol 75:11079-87
Quinones-Kochs, M I; Schnell, M J; Buonocore, L et al. (2001) Mechanisms of loss of foreign gene expression in recombinant vesicular stomatitis viruses. Virology 287:427-35
Dalton, K P; Rose, J K (2001) Vesicular stomatitis virus glycoprotein containing the entire green fluorescent protein on its cytoplasmic domain is incorporated efficiently into virus particles. Virology 279:414-21
Kahn, J S; Schnell, M J; Buonocore, L et al. (1999) Recombinant vesicular stomatitis virus expressing respiratory syncytial virus (RSV) glycoproteins: RSV fusion protein can mediate infection and cell fusion. Virology 254:81-91
Roberts, A; Buonocore, L; Price, R et al. (1999) Attenuated vesicular stomatitis viruses as vaccine vectors. J Virol 73:3723-32
Baba, T W; Liska, V; Khimani, A H et al. (1999) Live attenuated, multiply deleted simian immunodeficiency virus causes AIDS in infant and adult macaques. Nat Med 5:194-203

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