CYTOPATHIC EFFECT IN HUMAN PAPILLOMAVIRUS TYPE-1 INDUCED INCLUSION WARTS - IN-VITRO ANALYSIS OF THE CONTRIBUTION OF 2 FORMS OF THE VIRAL E4 PROTEIN
JOURNAL OF INVESTIGATIVE DERMATOLOGY
Authors: ROGELGAILLARD, C; PEHAUARNAUDET, G; BREITBURD, F; ORTH, G
Abstract
Myrmecia warts induced by human papillomavirus type 1 (HPV1) are characterized by abundant eosinophilic inclusions associated with HPV1 E4 gene products. The major HPV1 E4 proteins are a 17-kilodalton (kDa) E1-E4 fusion protein and a 16-kDa species lacking the five El aminoacids and a few E4 residues. To study the contribution of E4 proteins to the formation of myrmecia inclusions, we used a previously designed transient expression system in the rabbit VX2-R keratinocyte line. We find that the E1-E4 and an E4 protein without the E1 residues (E4-3200) form eosinophilic inclusions. Ultrastructural and immunoelectron microscopic studies show that the electron-dense, keratohyalin-like myrmecia inclusions are recognized by anti-E4 antibodies. They are associated with tonofilament bundles at their periphery in the cytoplasm or free of filaments in the nucleus. The E1-E4 inclusions formed in vitro are also homogeneously electron dense, and are usually associated with tonofilaments at their periphery in the cytoplasm and free of filaments in the nucleus. The E4-3200 inclusions are exclusively cytoplasmic and heterogeneously electron dense, with a fibrillar structure made of entangled 10-nm filaments. The expression of either protein in VX2-R cells does not result in the collapse of the cytokeratin network, as shown by immunofluorescence double-labeling experiments. This is in contrast to data reported for the HPV16 E1-E4 protein. Our findings indicate that the E1-E4 protein by itself accounts for the formation of myrmecia inclusions, and suggest that the five N-terminal E1 aminoacids play a major role in the interaction of E4 proteins with intermediate filaments.
HUMAN PAPILLOMAVIRUS (HPV) TYPES SPECIFIC OF EPIDERMODYSPLASIA-VERRUCIFORMIS DETECTED IN WARTS INDUCED BY HPV3 OR HPV3-RELATED TYPES IN IMMUNOSUPPRESSED PATIENTS
JOURNAL OF INVESTIGATIVE DERMATOLOGY
Authors: OBALEK, S; FAVRE, M; SZYMANCZYK, J; MISIEWICZ, J; JABLONSKA, S; ORTH, G
Abstract
Epidermodysplasia verruciformis (EV) is characterized by an abnormal genetic predisposition to infection with specific types of human papillomavirus (HPV). Specific defects of the cell-mediated immunity and/or of the control of HPV infection in keratinocytes are assumed to be involved in the development of the disease. As a model to test this hypothesis, we have studied the prevalence of EV-specific HPV in skin warts of 56 immunosuppressed patients. All main types of cutaneous HPV (HPV1, 2, 3, 4, 10, and 28) responsible for skin warts in the general population were detected by blot hybridization. EV-specific HPV (HPV5, 20, and 23) were detected in three patients. Four additional patients were found infected with HPV49, first characterized in the course of this study, and found to be related to EV HPV. A most important finding was that HPV5, 20, 23, and 49 were always codetected with HPV3 or the related types HPV10 and 28. None of the specimens showed the typical clinical morphology of EV lesions. In none of these specimens was the specific cytopathic effect of EV recognized; instead that of HPV3 and related types was seen. No evidence for productive EV HPV DNA replication was obtained for the three specimens that could be further analyzed by in situ hybridization. Our data suggest that HPV3 infection favors infection with EV HPV in immunosuppressed patients but that the full expression of EV HPV is usually restricted as in the general population.