TY - JOUR
T1 - Recombinant lectin-like domain of thrombomodulin suppresses vascular inflammation by reducing leukocyte recruitment via interacting with lewis y on endothelial cells
AU - Lin, Wei Ling
AU - Chang, Chuan Fa
AU - Shi, Chung Sheng
AU - Shi, Guey Yueh
AU - Wu, Hua Lin
PY - 2013/10
Y1 - 2013/10
N2 - OBJECTIVE - : The N-terminal lectin-like domain (domain 1 [D1]) of thrombomodulin (TM) is known to have an anti-inflammatory function. We previously showed that recombinant TM domain 1 (rTMD1) interacts with a carbohydrate molecule, Lewis Y (Le), which is found to be expressed on adhesion molecules and involved in cell adhesion. Here, we tested the effect of rTMD1/Le interaction on leukocyte recruitment in inflammation. APPROACH AND RESULTS - : The expression of Le on the surface of human umbilical vein endothelial cells was increased by tumor necrosis factor-α stimulation. Direct binding of rTMD1 to Le on the cell surface was observed. rTMD1 inhibited Le-mediated leukocyte adhesion on the Le-immobilized flow chamber and activated endothelium under a shear flow. The following leukocyte transmigration to endothelium was also reduced by rTMD1 through binding Le. In vivo, treatment of rTMD1 reduced leukocyte recruitment to the inflammatory sites in carotid ligation injury and thioglycollate-induced peritonitis. rTMD1 administration in apolipoprotein E-deficient mice effectively suppressed atherosclerotic plaque formation and macrophage infiltration in atherosclerotic lesions. Increased Le expression, as well as administered rTMD1, was observed in inflamed vessels. CONCLUSIONS - : rTMD1 suppresses vascular inflammation by inhibiting leukocyte recruitment to endothelium through attenuating Le-mediated adhesion and further protects against atherosclerosis progression. The present study provides a mechanism showing that rTMD1 can inhibit inflammation by binding to its carbohydrate ligand Le.
AB - OBJECTIVE - : The N-terminal lectin-like domain (domain 1 [D1]) of thrombomodulin (TM) is known to have an anti-inflammatory function. We previously showed that recombinant TM domain 1 (rTMD1) interacts with a carbohydrate molecule, Lewis Y (Le), which is found to be expressed on adhesion molecules and involved in cell adhesion. Here, we tested the effect of rTMD1/Le interaction on leukocyte recruitment in inflammation. APPROACH AND RESULTS - : The expression of Le on the surface of human umbilical vein endothelial cells was increased by tumor necrosis factor-α stimulation. Direct binding of rTMD1 to Le on the cell surface was observed. rTMD1 inhibited Le-mediated leukocyte adhesion on the Le-immobilized flow chamber and activated endothelium under a shear flow. The following leukocyte transmigration to endothelium was also reduced by rTMD1 through binding Le. In vivo, treatment of rTMD1 reduced leukocyte recruitment to the inflammatory sites in carotid ligation injury and thioglycollate-induced peritonitis. rTMD1 administration in apolipoprotein E-deficient mice effectively suppressed atherosclerotic plaque formation and macrophage infiltration in atherosclerotic lesions. Increased Le expression, as well as administered rTMD1, was observed in inflamed vessels. CONCLUSIONS - : rTMD1 suppresses vascular inflammation by inhibiting leukocyte recruitment to endothelium through attenuating Le-mediated adhesion and further protects against atherosclerosis progression. The present study provides a mechanism showing that rTMD1 can inhibit inflammation by binding to its carbohydrate ligand Le.
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U2 - 10.1161/ATVBAHA.113.301221
DO - 10.1161/ATVBAHA.113.301221
M3 - Article
C2 - 23950139
AN - SCOPUS:84885041183
SN - 1079-5642
VL - 33
SP - 2366
EP - 2373
JO - Arteriosclerosis, thrombosis, and vascular biology
JF - Arteriosclerosis, thrombosis, and vascular biology
IS - 10
ER -