| Literature DB >> 26946401 |
Ye-Ram Kim1, Jangsun Hwang2, Hyun-Jung Koh1, Kiseok Jang3, Jong-Dae Lee4, Jonghoon Choi5, Chul-Su Yang6.
Abstract
Hyper-inflammatory responses triggered by intracellular reactive oxygen species (ROS) can lead to a variety of diseases, including sepsis and colitis. However, the regulators of this process remain poorly defined. In this study, we demonstrate that c-Src is a negative regulator of cellular ROS generation through its binding to p47phox. This molecule also competitively inhibits the NADPH oxidase complex (NOX) assembly. Furthermore, we developed the schizophyllan (SPG)-c-Src SH3 peptide, which is a β-1,3-glucan conjugated c-Src SH3-derived peptide composed of amino acids 91-108 and 121-140 of c-Src. The SPG-SH3 peptide has a significant therapeutic effect on mouse ROS-mediated inflammatory disease models, cecal-ligation-puncture-induced sepsis, and dextran sodium sulfate-induced colitis. It does so by inhibiting the NOX subunit assembly and proinflammatory mediator production. Therefore, the SPG-SH3 peptide is a potential therapeutic agent for ROS-associated lethal inflammatory diseases. Our findings provide clues for the development of new peptide-base drugs that will target p47phox.Entities:
Keywords: Colitis; Reactive oxygen species; Schizophyllan; Sepsis; c-Src
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Year: 2016 PMID: 26946401 DOI: 10.1016/j.biomaterials.2016.02.035
Source DB: PubMed Journal: Biomaterials ISSN: 0142-9612 Impact factor: 12.479