Author: Gout, E.; Gutkowska, M.; Takayama, S.; Reed, J.C.; Chroboczek, J.
Title: Coâ€chaperone BAG3 and adenovirus penton base protein partnership Cord-id: lweiwh3p Document date: 2010_7_6
ID: lweiwh3p
Snippet: The BAG family of Hsp70/Hsc70 coâ€chaperones is characterised by the presence of a conserved BAG domain at the carboxylâ€terminus. BAG3 protein is the only member of this family containing also the Nâ€terminally located WW domain. We describe here the identification of adenovirus (Ad) penton base protein as the first BAG3 partner recognising BAG3 WW domain. Ad penton base is the viral capsid constituent responsible for virus internalisation. It contains in the Nâ€terminal part two conserved
Document: The BAG family of Hsp70/Hsc70 coâ€chaperones is characterised by the presence of a conserved BAG domain at the carboxylâ€terminus. BAG3 protein is the only member of this family containing also the Nâ€terminally located WW domain. We describe here the identification of adenovirus (Ad) penton base protein as the first BAG3 partner recognising BAG3 WW domain. Ad penton base is the viral capsid constituent responsible for virus internalisation. It contains in the Nâ€terminal part two conserved PPxY motifs, known ligands of WW domains. In cells producing Ad penton base protein, cytoplasmic endogenous BAG3 interacts with it and coâ€migrates to the nucleus. Preincubation of BAG3 with Ad base protein results in only slight modulation of BAG3 coâ€chaperone activity, suggesting that this interaction is not related to the classical BAG3 coâ€chaperone function. However, depletion of BAG3 impairs the cell entry of the virus and viral progeny production in Adâ€infected cells, suggesting that the interaction between virus penton base protein and cellular coâ€chaperone BAG3 positively influences virus life cycle. These results thus demonstrate a novel host–pathogen interaction, which contributes to the successful infectious life cycle of adenoviruses. In addition, these data enrich our knowledge about the multifunctionality of the BAG3 coâ€chaperone. J. Cell. Biochem. 111: 699–708, 2010. © 2010 Wileyâ€Liss, Inc.
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