αvβ3-integrin-dependent activation of focal adhesion kinase mediates NF-κB activation and motogenic activity by HIV-1 Tat in endothelial cells
Author(s) -
Chiara Urbinati,
Antonella Bugatti,
Mauro Giacca,
David D. Schlaepfer,
Marco Presta,
Marco Rusnati
Publication year - 2005
Publication title -
journal of cell science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.384
H-Index - 278
eISSN - 1477-9137
pISSN - 0021-9533
DOI - 10.1242/jcs.02518
Subject(s) - focal adhesion , rhoa , microbiology and biotechnology , integrin , ptk2 , biology , cell adhesion , rho associated protein kinase , kinase , signal transduction , protein kinase a , biochemistry , mitogen activated protein kinase kinase , receptor , cell
Once in the extracellular environment, the transactivator protein HIV-1 Tat exerts several pleiotropic effects by interacting with different cellular receptors, including integrin alpha(v)beta3. Real-time surface plasmon resonance analysis reveals that Tat/alpha(V)beta3 interaction occurs with rapid kinetics (association and dissociation rates equal to 1.16 x 10(7) M(-1) s(-1) and 3.78 x 10(-1) s(-1), respectively) and high affinity (dissociation constant = 32 nM). Through this interaction, substratum-immobilized Tat promotes adhesion and motogenic activity in endothelial cells. Also, alpha(v)beta(3)/Tat interaction triggers the activation of focal adhesion kinase, RhoA and pp60src. Overexpression of the dominant negative form of focal adhesion kinase, but not of an inactive Leu1034Ser substitution mutant isoform, impairs the activation of focal adhesion kinase and RhoA, but not that of pp60src, without affecting endothelial cell adhesion and spreading. alpha(v)beta3/Tat interaction triggers the activation of NF-kappaB in endothelial cells in a focal adhesion kinase-, RhoA- and pp60src-dependent manner, as shown in dominant negative focal adhesion kinase transfectants or using specific pharmacological inhibitors. Finally, the activation of focal adhesion kinase, RhoA, NF-kappaB and pp60src are required to mediate the motogenic activity of Tat in endothelial cells. Since Tat accumulates in an immobilized form in the extracellular matrix, these results provide new biochemical and biological insights about alpha(v)beta3/Tat interaction exploitable for the design of anti-Tat strategies.
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