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Journal of Virology|April 1, 1992
Glycoprotein gI of pseudorabies virus promotes cell fusion and virus spread via direct cell-to-cell transmissionL Zsak, F Zuckermann, N Sugg, et al.Virology|December 1, 1983
Characterization of the immediate-early functions of pseudorabies virusS Ihara, L Feldman, S Watanabe, et al.Virology|June 1, 1984
The large late virus transcripts synthesized in herpesvirus suis (pseudorabies) virus-infected cells are not precursors of mRNAA M Deatly, L T Feldman, T Ben-PoratJournal of Virology|September 1, 1987
Role of pseudorabies virus glycoprotein gI in virus release from infected cellsT C Mettenleiter, C Schreurs, F Zuckermann, et al.Journal of Virology|March 1, 1987
Genome location and identification of functions defective in the Bartha vaccine strain of pseudorabies virusB Lomniczi, S Watanabe, T Ben-Porat, et al.Journal of Virology|October 1, 1984
Genetic basis of the neurovirulence of pseudorabies virusB Lomniczi, S Watanabe, T Ben-Porat, et al.Virology|November 1, 1990
Effect of polylysine on the early stages of infection of wild type pseudorabies virus and of mutants defective in gIIIL Zsak, T C Mettenleiter, N Sugg, et al.Journal of Virology|December 1, 1989
Release of pseudorabies virus from infected cells is controlled by several viral functions and is modulated by cellular componentsL Zsak, T C Mettenleiter, N Sugg, et al.Virology|March 1, 1992
Cleavage of concatemeric DNA at the internal junction of "translocation" mutants of pseudorabies virus and inversion of their L component appear to be linkedS Kupershmidt, G F Rall, Z Q Lu, et al.American Journal of Veterinary Research|July 1, 1985
Vaccination of swine with thymidine kinase-deficient mutants of pseudorabies virusS McGregor, B C Easterday, A S Kaplan, et al.Pageof 6