Oncoviral Bovine Leukemia Virus G4 and Human T-Cell Leukemia Virus Type 1 p13 II Accessory Proteins Interact with Farnesyl Pyrophosphate Synthetase

Author:

Lefèbvre Laurent1,Vanderplasschen Alain2,Ciminale Vincenzo3,Heremans Hubertine4,Dangoisse Olivier1,Jauniaux Jean-Claude5,Toussaint Jean-François6,Zelnik Vlado7,Burny Arsène1,Kettmann Richard1,Willems Luc1

Affiliation:

1. Faculty of Agronomy, Gembloux

2. Faculty of Veterinary Medicine, University of Liège, Liège

3. Department of Oncology and Surgical Sciences, University of Padova, Padua, Italy

4. Rega Institute, University of Leuven, Leuven

5. DKFZ, Heidelberg, Germany

6. Veterinary and Agrochemical Research Centre, Uccle, Belgium

7. Institute of Virology, Bratislava, Slovak Republic

Abstract

ABSTRACT G4 and p13 II are accessory proteins encoded by the X region of bovine leukemia virus and human T-cell leukemia virus type 1 (HTLV-1), respectively. Disruption of the G4 and p13 II open reading frames interferes with viral spread in animal model systems, indicating that the corresponding proteins play a key role in viral replication. In addition, G4 is oncogenic in primary cell cultures and is absolutely required for efficient onset of leukemogenesis in sheep. To gain insight into the function of these proteins, we utilized the yeast two-hybrid system to identify protein partners of G4. Results revealed that G4 interacts with farnesyl pyrophosphate synthetase (FPPS), a protein involved in the mevalonate/squalene pathway and in synthesis of FPP, a substrate required for prenylation of Ras. The specificity of the interaction was verified by glutathione S -transferase (GST) pull-down assays and by coimmunoprecipitation experiments. Furthermore, confocal microscopy showed that the subcellular localization of G4 was profoundly affected by FPPS. The G4 protein itself was not prenylated, at least in rabbit reticulocyte lysate-based assays. The domain of G4 required for binding to FPPS was restricted to an amphipathic α-helix rich in arginine residues. Subtle mutation of this α-helix abrogated G4 oncogenic potential in vitro, providing a biological relevance for FPPS-G4 complex formation in cells. Finally, HTLV-1 p13 II was also found to specifically interact with FPPS (in yeast as well as in GST pull-down assays) and to colocalize with G4 in mitochondria, suggesting a functional analogy between these oncoviral accessory proteins. Identification of FPPS as a molecular partner for p13 II and G4 accessory proteins opens new prospects for treatment of retrovirus-induced leukemia.

Publisher

American Society for Microbiology

Subject

Virology,Insect Science,Immunology,Microbiology

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