Literature DB >> 15595833

Oligomerization is required for HIV-1 Nef-induced activation of the Src family protein-tyrosine kinase, Hck.

Huihui Ye1, Hyun-Jung Choi, Jerrod Poe, Thomas E Smithgall.   

Abstract

Hck is a member of the Src protein-tyrosine kinase family and is expressed strongly in macrophages, an important HIV target cell. Previous studies have shown that Nef, an HIV-1 accessory protein essential for AIDS progression, binds and activates Hck through its SH3 domain. Structural analysis suggests that Nef forms oligomers in vivo, which may bring multiple Hck molecules into close proximity and promote autophosphorylation. Using bimolecular GFP fluorescence complementation, we show for the first time that Nef oligomerizes in living cells and that the oligomers localize to the plasma membrane. To test the role of Nef oligomerization in Hck activation, we fused Nef to the hormone-binding domain of the estrogen receptor (Nef-ER), allowing us to control its dimerization with 4-hydroxytamoxifen (4-HT). In Rat-2 fibroblasts co-expressing Nef-ER and Hck, 4-HT treatment induced Nef-ER dimer and tetramer formation, leading to Hck kinase activation and cellular transformation. The number of transformed foci observed with Nef-ER plus Hck in the presence of 4-HT was markedly greater than that observed with wild-type Nef plus Hck, suggesting that enforced oligomerization enhances activation of Hck by Nef in vivo. Enhanced transformation correlated with increased Hck/Nef complex formation at the plasma membrane. In complementary experiments, we observed that a Nef mutant defective for Hck SH3 domain binding (Nef-PA) suppressed Hck kinase activation and transformation by the wild-type Hck/Nef complex. This effect correlated with the formation of a ternary complex between wild-type Nef, Nef-PA, and Hck, suggesting that Nef-PA suppresses Hck activation by blocking wild-type Nef oligomerization. Finally, Nef-ER induced Hck activation in a 4-HT-dependent manner in the macrophage precursor cell line TF-1, suggesting that oligomerization is essential for signaling through Hck in a cell background relevant to HIV infection. Together, these data demonstrate that Nef oligomerization is critical to the activation of Hck in vivo, and suggest that inhibitors of oligomerization may suppress Nef signaling through Hck in HIV-infected macrophages, slowing disease progression.

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Year:  2004        PMID: 15595833     DOI: 10.1021/bi048712f

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  28 in total

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4.  Modeling the evolution of SIV sooty mangabey progenitor virus towards HIV-2 using humanized mice.

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Review 5.  Structure, function, and inhibitor targeting of HIV-1 Nef-effector kinase complexes.

Authors:  Ryan P Staudt; John J Alvarado; Lori A Emert-Sedlak; Haibin Shi; Sherry T Shu; Thomas E Wales; John R Engen; Thomas E Smithgall
Journal:  J Biol Chem       Date:  2020-08-29       Impact factor: 5.157

Review 6.  Imaging of HIV/host protein interactions.

Authors:  Cindy M Danielson; Thomas J Hope
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7.  Self-association of the Lentivirus protein, Nef.

Authors:  Youn Tae Kwak; Alexa Raney; Lillian S Kuo; Sarah J Denial; Brenda R S Temple; J Victor Garcia; John L Foster
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8.  HIV-1 Nef dimerization is required for Nef-mediated receptor downregulation and viral replication.

Authors:  Jerrod A Poe; Thomas E Smithgall
Journal:  J Mol Biol       Date:  2009-09-23       Impact factor: 5.469

9.  Effector kinase coupling enables high-throughput screens for direct HIV-1 Nef antagonists with antiretroviral activity.

Authors:  Lori A Emert-Sedlak; Purushottam Narute; Sherry T Shu; Jerrod A Poe; Haibin Shi; Naveena Yanamala; John Jeff Alvarado; John S Lazo; Joanne I Yeh; Paul A Johnston; Thomas E Smithgall
Journal:  Chem Biol       Date:  2013-01-24

10.  HIV-1 Nef disrupts the podocyte actin cytoskeleton by interacting with diaphanous interacting protein.

Authors:  Ting-Chi Lu; John Cijiang He; Zhao-Hui Wang; Xiaobei Feng; Tomoko Fukumi-Tominaga; Nan Chen; Jin Xu; Ravi Iyengar; Paul E Klotman
Journal:  J Biol Chem       Date:  2008-01-30       Impact factor: 5.157

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