Related Experiment Video
Updated: Jan 19, 2026

Fabrication of Spatially Confined Complex Oxides
Published on: July 1, 2013
Spatial oxidation of L-plastin downmodulates actin-based functions of tumor cells
Emre Balta1, Robert Hardt2, Jie Liang1
1Section of Molecular Immunology, Institute of Immunology, Heidelberg University Hospital, 69120, Heidelberg, Germany.
Abstract:
Several antitumor therapies work by increasing reactive oxygen species (ROS) within the tumor micromilieu. Here, we reveal that L-plastin (LPL), an established tumor marker, is reversibly regulated by ROS-induced thiol oxidation on Cys101, which forms a disulfide bridge with Cys42. LPL reduction is mediated by the Thioredoxin1 (TRX1) system, as shown by TRX1 trapping, TRX1 knockdown and blockade of Thioredoxin1 reductase (TRXR1) with auranofin. LPL oxidation diminishes its actin-bundling capacity. Ratiometric imaging using an LPL-roGFP-Orp1 fusion protein and a dimedone-based proximity ligation assay (PLA) reveal that LPL oxidation occurs primarily in actin-based cellular extrusions and strongly inhibits cell spreading and filopodial extension formation in tumor cells. This effect is accompanied by decreased tumor cell migration, invasion and extracellular matrix (ECM) degradation. Since LPL oxidation occurs following treatment of tumors with auranofin or γ-irradiation, it may be a molecular mechanism contributing to the effectiveness of tumor treatment with redox-altering therapies.
Related Concept Videos
08:45Fabrication of Spatially Confined Complex Oxides
08:37Study of the Actin Cytoskeleton in Live Endothelial Cells Expressing GFP-Actin
06:32Multiplex Immunohistochemical Analysis of the Spatial Immune Cell Landscape of the Tumor Microenvironment
08:40Reconstitution of Actin-Based Motility with Commercially Available Proteins
09:00Spatial Measurements of Perfusion, Interstitial Fluid Pressure and Liposomes Accumulation in Solid Tumors
07:53Actin Co-Sedimentation Assay; for the Analysis of Protein Binding to F-Actin

