Novel Role for Non-muscle Myosin Light Chain Kinase (MLCK) in Hyperoxia-induced Recruitment of Cytoskeletal Proteins, NADPH Oxidase Activation, and Reactive Oxygen Species Generation in Lung Endothelium
Novel Role for Non-muscle Myosin Light Chain Kinase (MLCK) in Hyperoxia-induced Recruitment of Cytoskeletal Proteins, NADPH Oxidase Activation, and Reactive Oxygen Species Generation in Lung Endothelium
We recently demonstrated that hyperoxia (HO) activates lung endothelial cell NADPH oxidase and generates reactive oxygen species (ROS)/superoxide via Src-dependent tyrosine phosphorylation of p47(phox) and cortactin. Here, we demonstrate that the non-muscle ~214-kDa myosin light chain (MLC) kinase (nmMLCK) modulates the interaction between cortactin and p47(phox) that plays a role in the assembly and activation of endothelial NADPH oxidase. Overexpression of FLAG-tagged wild type MLCK in human pulmonary artery endothelial cells enhanced interaction and co-localization between cortactin and p47(phox) at the cell periphery and ROS production, whereas abrogation of MLCK using specific siRNA significantly inhibited the above. Furthermore, HO stimulated phosphorylation of MLC and recruitment of phosphorylated and non-phosphorylated cortactin, MLC, Src, and p47(phox) to caveolin-enriched microdomains (CEM), whereas silencing nmMLCK with siRNA blocked recruitment of these components to CEM and ROS generation. Exposure of nmMLCK(-/-) null mice to HO (72 h) reduced ROS production, lung inflammation, and pulmonary leak compared with control mice. These results suggest a novel role for nmMLCK in hyperoxia-induced recruitment of cytoskeletal proteins and NADPH oxidase components to CEM, ROS production, and lung injury.
- University of Illinois at Urbana Champaign United States
- University of Chicago United States
- University of Illinois at Chicago United States
- Beckman Research Institute United States
- City Of Hope National Medical Center United States
Mice, Knockout, Endothelial Cells, NADPH Oxidases, Hyperoxia, Enzyme Activation, Mice, Inbred C57BL, Mice, Animals, Humans, Reactive Oxygen Species, Cortactin, Lung, Myosin-Light-Chain Kinase, Cells, Cultured, Protein Binding
Mice, Knockout, Endothelial Cells, NADPH Oxidases, Hyperoxia, Enzyme Activation, Mice, Inbred C57BL, Mice, Animals, Humans, Reactive Oxygen Species, Cortactin, Lung, Myosin-Light-Chain Kinase, Cells, Cultured, Protein Binding
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