Title of article
Reactive oxygen species activate focal adhesion kinase, paxillin and P130CAS tyrosine phosphorylation in endothelial cells
Author/Authors
Alexia Gozin، نويسنده , , Elisabeth Franzini، نويسنده , , Valérie Andrieu، نويسنده , , Lydie Da Costa، نويسنده , , Emmanuelle Rollet-Labelle، نويسنده , , Catherine Pasquier، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 1998
Pages
12
From page
1021
To page
1032
Abstract
Reactive oxygen species (ROS), particularly hydroxyl radical (HOradical dot), increase neutrophil adherence to hypoxanthine-xanthine oxidase (HX-XO)-treated human umbilical vein endothelial cells (HUVEC) in culture. This adherence is inhibited by the tyrosine kinase inhibitors genistein (30 μM) and herbimycin A (0.9 μM), suggesting the involvement of tyrosine kinase. Phosphorylation of several HUVEC proteins in the range of 120–130 and 70 kDa was found to depend on the XO concentration and stimulation time. This phosphorylation was inhibited by the antioxidants dimethylthiourea (DMTU, 0.75 to 7.5 mM) and pentoxifylline (Ptx, 0.1 mM), and by the iron chelators desferrioxamine (DF, 1 mM) and hydroxybenzyl ethylene diamine (HBED, 0.5 mM), suggesting the involvement of HOradical dot. Three tyrosine-phosphorylated proteins, focal adhesion kinase (p125FAK), paxillin (PAX) and p130cas were isolated and characterized by immunoprecipitation and western blotting. Antioxidants and iron chelators reduced their phosphorylation. HUVEC treated with ROS for 15 min showed actin stress fiber formation. Cytochalasin D (5 μM) inhibited tyrosine phosphorylation and PMN-HUVEC adherence, showing the importance of cytoskeleton integrity in these two functions. In conclusion, HOradical dot, which is involved in increased PMN-HUVEC adhesion, also increases tyrosine phosphorylation on three major cytoskeleton proteins which seem to play a role in this adhesion.
Keywords
Endothelial cells , adhesion , Hydoxyl radical , tyrosine phosphorylation , focal adhesion kinase , Paxillin , Human polymorphonuclear neutrophils , Cytoskeleton
Journal title
Free Radical Biology and Medicine
Serial Year
1998
Journal title
Free Radical Biology and Medicine
Record number
518022
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