Myosin light-chain kinase contributes to short-term endothelial cell cytoskeletal alteration induced by serum from burned rats
Abstract:Objectives To investigate the time-dependent effects of serum from bumed rats on cytoskeletal filamentous actin(F-actin) reorganization by visualizing their distribution in human umbilical vein endothelial cell line ECV-304 and evaluate the role of myosin light-chain kinase (MLCK) in this process. Methods The serum-starved ECV-304 cells were incubated with the serum from burned rats for 30 min, 1, 2, 4, and 6 h, respectively, and 30 min before or after the incubation, the cells were treated with 5μmol/L ML-7 for 30 min. F-actin was stained with rhodamine-phalloidin and observed under fluorescence microscope. Results Under normal condition, F-actin was distributed mainly in the cortical area of the endothelial cells. After stimulation with the burn serum, stress fiber formation could be clearly seen in the endothelial cells, exhibiting a time-dependent enhancement in a time course ranging from 30 min to 6 h. Such an effect could be significantly inhibited by a 30-min pretreatment of the cells with MLCK-specific inhibitor ML-7. Inhibition of MLCK also reversed actin reorganization in the endothelial cells pretreated with the bum serum. Conclusion Serum from burned rats induces characteristic morphological changes in the endothelial cell actin cytoskeleton mainly due to the MLCK activation, an effect that can be reversed by the inhibition of MLCK.
Keywords:endothelial cellsburnF-actinmyosin light-chain kinase
Publication Date:2004-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:5( 481-484,488 )
Journal of Southern Medical University

Journal of Southern Medical University

PKUISTIC
ISSN:1673-4254
Year, Vol.(Issue):2004,24(5)