Stability of HTLV-2 antisense protein is controlled by PML nuclear bodies in a SUMO-dependent manner
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Since the identification of the antisense protein of HTLV-2 (APH-2) and the demonstration that APH-2 mRNA is expressed in vivo in most HTLV-2 carriers, much effort has been dedicated to the elucidation of similarities and/or differences between APH-2 and HBZ, the antisense protein of HTLV-1. Similar to HBZ, APH-2 negatively regulates HTLV-2 transcription. However, it does not promote cell proliferation. In contrast to HBZ, APH-2 half-life is very short. Here, we show that APH-2 is addressed to PML nuclear bodies in T-cells, as well as in different cell types. Covalent SUMOylation of APH-2 is readily detected, indicating that APH-2 might be addressed to the PML nuclear bodies in a SUMO-dependent manner. We further show that silencing of PML increases expression of APH-2, while expression of HBZ is unaffected. On the other hand, SUMO-1 overexpression leads to a specific loss of APH-2 expression that is restored upon proteasome inhibition. Furthermore, the carboxy-terminal LAGLL motif of APH-2 is responsible for both the targeting of the protein to PML nuclear bodies and its short half-life. Taken together, these observations indicate that natural APH-2 targeting to PML nuclear bodies induces proteasomal degradation of the viral protein in a SUMO-dependent manner. Hence, this study deciphers the molecular and cellular bases of APH-2 short half-life in comparison to HBZ and highlights key differences in the post-translational mechanisms that control the expression of both proteins. © 2018 Macmillan Publishers Limited, part of Springer Nature.
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Basic-leucine zipper transcription factors, Gene expression regulation, viral, Half-life, Hela cells, Human t-lymphotropic virus 2, Humans, Intranuclear inclusion bodies, Jurkat cells, Promyelocytic leukemia protein, Proteasome endopeptidase complex, Proteolysis, Retroviridae proteins, Sumo-1 protein, Sumoylation, Transcription, genetic, Viral proteins, Cycloheximide, Fusion protein, Human t cell leukemia virus antibody, Nuclear protein, Proteasome, Protein hbz, Protein lagll, Sumo 1 protein, Unclassified drug, Viral protein, Basic leucine zipper transcription factor, Hbz protein, human t-cell leukemia virus type i, Pml protein, human, Article, Cell culture, Cell differentiation, Cell nucleus inclusion body, Enzyme inhibition, Flow cytometry, Fluorescence microscopy, Genetic transfection, Half life time, Htlv-2 infection, Immunoprecipitation, Nonhuman, Priority journal, Protein degradation, Protein expression, Protein localization, Protein motif, Protein stability, Protein targeting, T lymphocyte, Western blotting, Chemistry, Gene expression regulation, Genetic transcription, Genetics, Hela cell line, Human, Jurkat cell line, Metabolism