LPS induces pp60c-src-mediated tyrosine phosphorylation of Hsp90 in lung vascular endothelial cells and mouse lung

Author:

Barabutis Nektarios1,Handa Vaishali1,Dimitropoulou Christiana2,Rafikov Ruslan1,Snead Connie1,Kumar Sanjiv13,Joshi Atul1,Thangjam Gagan1,Fulton David14,Black Stephen M.13,Patel Vijay5,Catravas John D.14

Affiliation:

1. Vascular Biology Center, Medical College of Georgia, Georgia Regents University, Augusta, Georgia;

2. Pulmonary and Critical Care Division, Department of Medicine, Medical College of Georgia, Georgia Regents University, Augusta, Georgia;

3. Department of Obstetrics and Gynecology, Medical College of Georgia, Georgia Regents University, Augusta, Georgia;

4. Department of Pharmacology and Toxicology, Medical College of Georgia, Georgia Regents University, Augusta, Georgia; and

5. Department of Cardiothoracic Surgery, Medical College of Georgia, Georgia Regents University, Augusta, Georgia

Abstract

Heat shock protein 90 (Hsp90) inhibitors were initially developed as anticancer agents; however, it is becoming increasing clear that they also possess potent anti-inflammatory properties. Posttranslational modifications of Hsp90 have been reported in tumors and have been hypothesized to affect client protein- and inhibitor-binding activities. In the present study we investigated the posttranslational modification of Hsp90 in inflammation. LPS, a prototypical inflammatory agent, induced concentration- and time-dependent tyrosine (Y) phosphorylation of Hsp90α and Hsp90β in bovine pulmonary arterial and human lung microvascular endothelial cells (HLMVEC). Mass spectrometry identified Y309 as a major site of Y phosphorylation on Hsp90α (Y300 of Hsp90β). LPS-induced Hsp90 phosphorylation was prevented by the Hsp90 inhibitor 17-allyl-amino-demethoxy-geldanamycin (17-AAG) in vitro as well as in lungs from LPS-treated mice, in vivo. Furthermore, 17-AAG prevented LPS-induced pp60src activation. LPS-induced Hsp90 phosphorylation was also prevented by the pp60src inhibitor PP2. Additionally, Hsp90 phosphorylation was induced by infecting cells with a constitutively active pp60src adenovirus, whereas either a dominant-negative pp60src adenovirus or reduced expression of pp60src by a specific siRNA prevented the LPS-induced Y phosphorylation of Hsp90. Transfection of HLMVEC with the nonphosphorylatable Hsp90β Y300F mutant prevented LPS-induced Hsp90β tyrosine phosphorylation but not pp60src activation. Furthermore, the Hsp90β Y300F mutant showed a reduced ability to bind the Hsp90 client proteins eNOS and pp60src and HLMVEC transfected with the mutant exhibited reduced LPS-induced barrier dysfunction. We conclude that inflammatory stimuli cause posttranslational modifications of Hsp90 that are Hsp90-inhibitor sensitive and may be important to the proinflammatory actions of Hsp90.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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