Publication | Open Access
Lumican Binds ALK5 to Promote Epithelium Wound Healing
75
Citations
80
References
2013
Year
Lumc13 PeptideLumican Binds Alk5EngineeringCell AdhesionCell DeathMolecular DynamicsCellular PhysiologyInflammationSignaling PathwayWound CareFibroblast Growth FactorMatrix BiologyCell SignalingMolecular SignalingCell BiologyBiomolecular EngineeringSignal TransductionCell-matrix InteractionWound HealingCellular BiochemistryMedicineExtracellular Matrix
Lumican (Lum), a small leucine-rich proteoglycan (SLRP) family member, has multiple matricellular functions both as an extracellular matrix component and as a matrikine regulating cell proliferation, gene expression and wound healing. To date, no cell surface receptor has been identified to mediate the matrikine functions of Lum. This study aimed to identify a perspective receptor that mediates Lum effects on promoting wound healing. Transforming growth factor-β receptor 1 (ALK5) was identified as a potential Lum-interacting protein through in silico molecular docking and molecular dynamics. This finding was verified by biochemical pull-down assays. Moreover, the Lum function on wound healing was abrogated by an ALK5-specific chemical inhibitor as well as by ALK5 shRNAi. Finally, we demonstrated that eukaryote-specific post-translational modifications are not required for the wound healing activity of Lum, as recombinant GST-Lum fusion proteins purified from E. coli and a chemically synthesized LumC13 peptide (the last C-terminal 13 amino acids of Lum) have similar effects on wound healing in vitro and in vivo.
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