The helicase-like transcription factor redirects the autophagic flux and restricts human T cell leukemia virus type 1 infection

Author:

Beauvois Aurélie12ORCID,Gazon Hélène12ORCID,Chauhan Pradeep Singh12ORCID,Jamakhani Majeed12ORCID,Jacques Jean-Rock12,Thiry Marc3ORCID,Dejardin Emmanuel4ORCID,Valentin Emmanuel Di5ORCID,Twizere Jean-Claude6ORCID,Péloponèse Jean-Marie7,Njock Makon-Sébastien8ORCID,Yasunaga Jun-Ichirou9ORCID,Matsuoka Masao9ORCID,Hamaïdia Malik12ORCID,Willems Luc12ORCID

Affiliation:

1. Laboratory of Molecular and Cellular Epigenetics, Grappe Interdisciplinaire de Génoprotéomique Appliquée, University of Liège, 4000, Liège, Belgium

2. Molecular Biology, Teaching and Research Center, University of Liège, 5030, Gembloux, Belgium

3. Laboratory of Cell and Tissue Biology, Grappe Interdisciplinaire de Génoprotéomique Appliquée, University of Liège, 4000, Liège, Belgium

4. Laboratory of Molecular Immunology & Signal Transduction, Grappe Interdisciplinaire de Génoprotéomique Appliquée, University of Liège, 4000, Liège, Belgium

5. Viral Vectors Platform, Grappe Interdisciplinaire de Génoprotéomique Appliquée, University of Liège, 4000 Liège, Belgium

6. Laboratory of Viral Interactomes, Unit of Molecular Biology of Diseases, Grappe Interdisciplinaire de Génoprotéomique Appliquée, University of Liège, 4000 Liège, Belgium

7. Institut de Recherche en Infectiologie de Montpellier, Université de Montpellier, CNRS, 34094, Montpellier, France

8. Laboratory of Pneumology, Grappe Interdisciplinaire de Génoprotéomique Appliquée, University of Liège, University Hospital of Liège, 4000 Liège, Belgium

9. Department of Hematology, Kumamoto University, 860-8556, Kumamoto, Japan

Abstract

Retroviruses and their host have coevolved in a delicate balance between viral replication and survival of the infected cell. In this equilibrium, restriction factors expressed by infected cells control different steps of retroviral replication such as entry, uncoating, nuclear import, expression, or budding. Here, we describe a mechanism of restriction against human T cell leukemia virus type 1 (HTLV-1) by the helicase-like transcription factor (HLTF). We show that RNA and protein levels of HLTF are reduced in primary T cells of HTLV-1-infected subjects, suggesting a clinical relevance. We further demonstrate that the viral oncogene Tax represses HLTF transcription via the Enhancer of zeste homolog 2 methyltransferase of the Polycomb repressive complex 2. The Tax protein also directly interacts with HLTF and induces its proteasomal degradation. RNA interference and gene transduction in HTLV-1-infected T cells derived from patients indicate that HLTF is a restriction factor. Restoring the normal levels of HLTF expression induces the dispersal of the Golgi apparatus and overproduction of secretory granules. By synergizing with Tax-mediated NF-κB activation, physiologically relevant levels of HLTF intensify the autophagic flux. Increased vesicular trafficking leads to an enlargement of the lysosomes and the production of large vacuoles containing viral particles. HLTF induction in HTLV-1-infected cells significantly increases the percentage of defective virions. In conclusion, HLTF-mediated activation of the autophagic flux blunts the infectious replication cycle of HTLV-1, revealing an original mode of viral restriction.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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