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Cytomegalovirus Replicon-Based Regulation of Gene Expression In Vitro and In Vivo
Authors:Hermine Mohr   Christian A. Mohr   Marlon R. Schneider   Laura Scrivano   Barbara Adler   Simone Kraner-Schreiber   Angelika Schnieke   Maik Dahlhoff   Eckhard Wolf   Ulrich H. Koszinowski   Zsolt Ruzsics
Affiliation:1Max von Pettenkofer-Institute, Ludwig-Maximilians-Universität München, Munich, Germany;2Institute of Molecular Animal Breeding and Biotechnology, Ludwig-Maximilians-Universität München, Munich, Germany;3Chair of Livestock Biotechnology, Technische Universität München, Freising, Germany
Abstract:There is increasing evidence for a connection between DNA replication and the expression of adjacent genes. Therefore, this study addressed the question of whether a herpesvirus origin of replication can be used to activate or increase the expression of adjacent genes. Cell lines carrying an episomal vector, in which reporter genes are linked to the murine cytomegalovirus (MCMV) origin of lytic replication (oriLyt), were constructed. Reporter gene expression was silenced by a histone-deacetylase-dependent mechanism, but was resolved upon lytic infection with MCMV. Replication of the episome was observed subsequent to infection, leading to the induction of gene expression by more than 1000-fold. oriLyt-based regulation thus provided a unique opportunity for virus-induced conditional gene expression without the need for an additional induction mechanism. This principle was exploited to show effective late trans-complementation of the toxic viral protein M50 and the glycoprotein gO of MCMV. Moreover, the application of this principle for intracellular immunization against herpesvirus infection was demonstrated. The results of the present study show that viral infection specifically activated the expression of a dominant-negative transgene, which inhibited viral growth. This conditional system was operative in explant cultures of transgenic mice, but not in vivo. Several applications are discussed.
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