Urokinase-receptor-mediated phenotypic changes in vascular smooth muscle cells require the involvement of membrane rafts

被引:25
作者
Kiyan, Julia [1 ]
Smith, Graham [2 ]
Haller, Hermann [1 ]
Dumler, Inna [1 ]
机构
[1] Hannover Med Sch, D-30625 Hannover, Germany
[2] AstraZeneca, Macclesfield SK10 4TF, Cheshire, England
关键词
caveolin; cell differentiation; lipid raft; platelet-derived growth factor-receptor (PDGFR); urokinase-type plasminogen activator receptor (uPAR); vascular smooth muscle cell; LIPID RAFTS; PLASMINOGEN-ACTIVATOR; NEOINTIMA FORMATION; CAVEOLAE; EXPRESSION; MIGRATION; ATHEROSCLEROSIS; UPAR;
D O I
10.1042/BJ20090447
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The cholesterol-enriched membrane microdomains lipid rafts play a key role in cell activation by recruiting and excluding specific signalling components of cell-surface receptors upon receptor engagement. Our previous studies have demonstrated that the GPI (glycosylphosphatidylinositol)-linked uPAR [uPA (urokinase-type plasminogen activator) receptor], which can be found in lipid rafts and in non-raft fractions, can mediate the differentiation of VSMCs (vascular smooth muscle cells) towards a pathophysiological de-differentiated phenotype. However, the mechanism by which uPAR and its ligand uPA regulate VSMC phenotypic changes is not known. In the present study, we provide evidence that the molecular machinery of uPAR-mediated VSMC differentiation employs lipid rafts. We show that the disruption of rafts in VSMCs by membrane cholesterol depletion using MCD (methyl-beta-cyclodextrin) or filipin leads to the up-regulation of uPAR and cell de-differentiation. uPAR silencing by means of interfering RNA resulted in an increased expression of contractile proteins. Consequently, disruption of lipid rafts impaired the expression of these proteins and transcriptional activity of related genes. We provide evidence that this effect was mediated by uPAR. Similar effects were observed in VSMCs isolated from Cav1(-l-) (caveolin-1-deficient) mice. Despite the level of uPAR being significantly higher after the disruption of the rafts, uPA/uPAR-dependent cell migration was impaired. However, caveolin-1 deficiency impaired only uPAR-dependent cell proliferation, whereas cell migration was strongly upregulated in these cells. Our results provide evidence that rafts are required in the regulation of uPAR-mediated VSMC phenotypic modulations. These findings suggest further that, in the context of uPA/uPAR-dependent processes, caveolac-associated and non-associated rafts represent different signalling membrane domains.
引用
收藏
页码:343 / 351
页数:9
相关论文
共 40 条
[1]   B-cell receptor translocation to lipid rafts and associated signaling differ between prognostically important subgroups of chronic lymphocytic leukemia [J].
Allsup, DJ ;
Kamiguti, AS ;
Lin, K ;
Sherrington, PD ;
Matrai, Z ;
Slupsky, JR ;
Cawley, JC ;
Zuzel, N .
CANCER RESEARCH, 2005, 65 (16) :7328-7337
[2]   Increased phosphorylation and redistribution of NMDA receptors between synaptic lipid rafts and post-synaptic densities following transient global ischemia in the rat brain [J].
Besshoh, S ;
Bawa, D ;
Teves, L ;
Wallace, MC ;
Gurd, JW .
JOURNAL OF NEUROCHEMISTRY, 2005, 93 (01) :186-194
[3]   uPAR: A versatile signalling orchestrator [J].
Blasi, F ;
Carmeliet, P .
NATURE REVIEWS MOLECULAR CELL BIOLOGY, 2002, 3 (12) :932-943
[4]   A RECEPTOR-MEDIATED PATHWAY FOR CHOLESTEROL HOMEOSTASIS [J].
BROWN, MS ;
GOLDSTEIN, JL .
SCIENCE, 1986, 232 (4746) :34-47
[5]   Impaired arterial neointima formation in mice with disruption of the plasminogen gene [J].
Carmeliet, P ;
Moons, L ;
Ploplis, V ;
Plow, E ;
Collen, D .
JOURNAL OF CLINICAL INVESTIGATION, 1997, 99 (02) :200-208
[6]   SMOOTH-MUSCLE CELLS EXPRESS UROKINASE DURING MITOGENESIS AND TISSUE-TYPE PLASMINOGEN-ACTIVATOR DURING MIGRATION IN INJURED RAT CAROTID-ARTERY [J].
CLOWES, AW ;
CLOWES, MM ;
AU, YPT ;
REIDY, MA ;
BELIN, D .
CIRCULATION RESEARCH, 1990, 67 (01) :61-67
[7]   Dimerization controls the lipid raft partitioning of uPAR/CD87 and regulates its biological functions [J].
Cunningham, O ;
Andolfo, A ;
Santovito, ML ;
Iuzzolino, L ;
Blasi, F ;
Sidenius, N .
EMBO JOURNAL, 2003, 22 (22) :5994-6003
[8]  
Dopico Alex M., 2007, V400, P1
[9]   Loss of caveolae, vascular dysfunction, and pulmonary defects in caveolin-1 gene-disrupted mice [J].
Drab, M ;
Verkade, P ;
Elger, M ;
Kasper, M ;
Lohn, M ;
Lauterbach, B ;
Menne, J ;
Lindschau, C ;
Mende, F ;
Luft, FC ;
Schedl, A ;
Haller, H ;
Kurzchalia, TV .
SCIENCE, 2001, 293 (5539) :2449-2452
[10]  
FALLIERBECKER P, 1990, CELL CULTURE TECHNIQ, P247