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A Novel Target and Approach for Identifying Antivirals against Molluscum Contagiosum Virus
Authors:Hancheng Guan  Manunya Nuth  Natalia Zhukovskaya  Yih Ling Saw  Edward Bell  Stuart N Isaacs  Robert P Ricciardi
Institution:aDepartment of Microbiology, School of Dental Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA;bDivision of Infectious Diseases, Perelman School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA;cAbramson Cancer Center, School of Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA
Abstract:The dermatological disease molluscum contagiosum (MC) presents as lesions restricted solely to the skin. The poxvirus molluscum contagiosum virus (MCV) is responsible for this skin disease that is easily transmitted through casual contact among all populations, with greater frequency in children and immunosuppressed individuals. In addition, sexual transmission of MCV in adolescents and adults is a health concern. Although the skin lesions ultimately resolve in immunocompetent individuals, they can persist for extended periods, be painful, and result in scarring. Treatment is problematic, and there is no drug that specifically targets MCV. The inability of MCV to propagate in cell culture has impeded drug development. To overcome these barriers, we integrated three new developments. First, we identified a new MCV drug target (mD4) that is essential for processive DNA synthesis in vitro. Second, we discovered a small chemical compound that binds to mD4 and prevents DNA synthesis in vitro. Third, and most significant, we engineered a hybrid vaccinia virus (mD4-VV) in which the natural vaccinia D4 (vD4) gene is replaced by the mD4 target gene. This hybrid virus is dependent on mD4 for viral growth in culture and is inhibited by the small compound. This target system provides, for the first time, a platform and approach for the discovery and evaluation of new therapeutics that can be used to treat MC.
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