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Nitrosative stress affects the interaction of integrin alphaIIbbeta3 with its ligands.

Authors :
Karanth, Sanjai
Delcea, Mihaela
Source :
BBA: Biomembranes. May2020, Vol. 1862 Issue 5, pN.PAG-N.PAG. 1p.
Publication Year :
2020

Abstract

Binding of integrin alphaIIbbeta3 (αiibβ3) to its ligands is a highly restricted and regulated mechanism. Any modification of the protein structure yields a dysfunctional role, especially in a redox environment. Here, we examine the effect of nitrosative stress on the αiibβ3 reconstituted into nanodiscs. Using single molecule force spectroscopy, we measured the interaction between αiibβ3 and its ligand RGD and found that in the presence of exogenous nitric oxide (NO) two force regimes are generated: a low force regime of ~100pN indicating the presence of integrin in a normal status, and a broad spectrum of high force regime (~210–450pN) suggesting the protein modification/aggregation. By high resolution atomic force microscopy imaging, we demonstrate that both NO and nitrite (a stable product formed from NO) are involved in destabilizing the transmembrane protein complex leading to release of αiibβ3 from the lipid bilayer and protein aggregation. Our experimental setup opens new ways for testing in a membrane environment the effect of radical species on integrins under clinically relevant conditions. Unlabelled Image • Transmembrane protein integrin alphaIIbbeta3 is reconstituted into nanodiscs. • Treatment with nitric oxide of integrin-RGD complex leads to force regimes corresponding to single integrin and protein aggregates. • AFM imaging showed that nitric oxide and nitrite are responsible for the destabilization of integrin and its release from the lipid system. • Nanodiscs preserve their membrane integrity upon nitric oxide treatment. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00052736
Volume :
1862
Issue :
5
Database :
Academic Search Index
Journal :
BBA: Biomembranes
Publication Type :
Academic Journal
Accession number :
141938726
Full Text :
https://doi.org/10.1016/j.bbamem.2020.183198