ATL response to arsenic/interferon therapy is triggered by SUMO/PML/RNF4-dependent Tax degradation
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American Society of Hematology
Abstract
The human T-cell lymphotropic virus type I (HTLV-1) Tax transactivator initiates transformation in adult T-cell leukemia/lymphoma (ATL), a highly aggressive chemotherapy-resistant malignancy. The arsenic/interferon combination, which triggers degradation of the Tax oncoprotein, selectively induces apoptosis of ATL cell lines and has significant clinical activity in Tax-driven murine ATL or human patients. However, the role of Tax loss in ATL response is disputed, and the molecular mechanisms driving degradation remain elusive. Here we demonstrate that ATL-derived or HTLV-1-transformed cells are dependent on continuous Tax expression, suggesting that Tax degradation underlies clinical responses to the arsenic/interferon combination. The latter enforces promyelocytic leukemia protein (PML) nuclear body (NB) formation and partner protein recruitment. In arsenic/interferon-treated HTLV-1 transformed or ATL cells, Tax is recruited onto NBs and undergoes PML-dependent hypersumoylation by small ubiquitin-like modifier (SUMO)2/3 but not SUMO1, ubiquitination by RNF4, and proteasome-dependent degradation. Thus, the arsenic/interferon combination clears ATL through degradation of its Tax driver, and this regimen could have broader therapeutic value by promoting degradation of other pathogenic sumoylated proteins. © 2015 by The American Society of Hematology.
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Antiviral agents, Apoptosis, Arsenicals, Blotting, western, Cell proliferation, Cell transformation, viral, Drug therapy, combination, Flow cytometry, Fluorescent antibody technique, Gene products, tax, Hela cells, Human t-lymphotropic virus 1, Humans, Immunoprecipitation, Interferons, Leukemia-lymphoma, adult t-cell, Nuclear proteins, Proteolysis, Sulfhydryl reagents, Sumo-1 protein, Sumoylation, Transcription factors, Tumor suppressor proteins, Ubiquitination, Arsenic, Interferon, Promyelocytic leukemia protein, Rnf4 protein, Sumo 1 protein, Sumo 2 protein, Sumo 3 protein, Sumo protein, Tax protein, Ubiquitin protein ligase, Unclassified drug, Antivirus agent, Nuclear protein, Organoarsenic derivative, Pml protein, human, Rnf4 protein, human, Thiol reagent, Transcription factor, Tumor suppressor protein, Article, Cell nucleus inclusion body, Confocal microscopy, Controlled study, Female, Hela cell line, Human, Human cell, Human t cell leukemia virus 1, Immunofluorescence, Priority journal, Protein degradation, Protein expression, T cell leukemia, Drug combination, Drug effects, Genetics, Metabolism, Pathogenicity, Virology, Virus cell transformation, Western blotting