The role of syndecan-2 in regulation of actin-cytoskeletal organization of Lewis lung carcinoma-derived metastatic clones

被引:58
作者
Munesue, S
Kusano, Y
Oguri, K
Itano, N
Yoshitomi, Y
Nakanishi, H
Yamashina, I
Okayama, M [1 ]
机构
[1] Kyoto Sangyo Univ, Fac Engn, Dept Biotechnol, Kyoto 6038555, Japan
[2] Natl Nagoya Hosp, Clin Res Inst, Nagoya, Aichi 4600001, Japan
[3] Aichi Canc Res Inst, Div Oncol Pathol, Nagoya, Aichi 4648681, Japan
关键词
actin stress fibres; cell adhesion; fibronectin-recombinant polypeptides; heparan sulphate proteoglycans; integrin alpha 5 beta 1;
D O I
10.1042/0264-6021:3630201
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
Syndecans, a family of transmembrane heparan sulphate proteoglycans, contribute to various biological processes, including adhesion, motility, proliferation, differentiation and morphogenesis. We document here the involvement of syndecan-2 acting alone or co-operatively with integrin alpha5beta1, for regulation of actin-cytoskeletal organization on cell adhesion to fibronectin, using fibronectin-recombinant polypeptides containing the ligands for either or both of these receptors as substrata. Lewis lung carcinoma-derived low-metastatic P29 cells binding to the substrata by both receptors formed actin stress fibres, whereas those binding by syndecan-2 or integrin alpha5beta1 alone formed filopodia or cortex actin. In contrast, higher metastatic LM66-H11 cells formed cortex actin even on substrata containing both ligands. Northern-blot and flow-cytometric analyses revealed that syndecan-2 expression in LM66-H11 cells was significantly lower (1/4.5 in mRNA and 1/8 in cell-surface expression) than in P29 cells, whereas expression levels of integrin alpha5beta1 and other syndecans were similar in both cell types. These results suggest that the failure of LM66-H11 to form stress fibres is due to a lower expression of syndecan-2 than that due to a threshold for its function. This was confirmed by the finding that overexpression of syndecan-2 by transfection of its cDNA into LM66-H11 cells caused the formation of stress fibres on the fibronectin substratum. These in vitro cellular responses of the two clones might reflect their in vivo situation in primary tumours in which P29 cells with a stroma-inducing capacity were immediately surrounded by fibronectin-rich matrix formed by the induced stromal cells, whereas LM66-H11 cells without such capacity were not surrounded by a similar matrix.
引用
收藏
页码:201 / 209
页数:9
相关论文
共 46 条
[21]   Syndecan-4 deficiency impairs focal adhesion formation only under restricted conditions [J].
Ishiguro, K ;
Kadomatsu, K ;
Kojima, T ;
Muramatsu, H ;
Tsuzuki, S ;
Nakamura, E ;
Kusugami, K ;
Saito, H ;
Muramatsu, T .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (08) :5249-5252
[22]   Phosphorylation of a membrane-intercalated proteoglycan, syndecan-2, expressed in a stroma-inducing clone from a mouse Lewis lung carcinoma [J].
Itano, N ;
Oguri, K ;
Nagayasu, Y ;
Kusano, Y ;
Nakanishi, H ;
David, G ;
Okayama, M .
BIOCHEMICAL JOURNAL, 1996, 315 :925-930
[23]   MEMBRANE-INTERCALATED PROTEOGLYCAN OF A STROMA-INDUCING CLONE FROM LEWIS LUNG-CARCINOMA BINDS TO FIBRONECTIN VIA ITS HEPARAN-SULFATE CHAINS [J].
ITANO, N ;
OGURI, K ;
NAKANISHI, H ;
OKAYAMA, M .
JOURNAL OF BIOCHEMISTRY, 1993, 114 (06) :862-873
[24]   PRIMARY STRUCTURE OF HUMAN FIBRONECTIN - DIFFERENTIAL SPLICING MAY GENERATE AT LEAST 10 POLYPEPTIDES FROM A SINGLE GENE [J].
KORNBLIHTT, AR ;
UMEZAWA, K ;
VIBEPEDERSEN, K ;
BARALLE, FE .
EMBO JOURNAL, 1985, 4 (07) :1755-1759
[25]   Participation of syndecan 2 in the induction of stress fiber formation in cooperation with integrin α5β1:: Structural characteristics of heparan sulfate chains with avidity to COOH-terminal heparin-binding domain of fibronectin [J].
Kusano, Y ;
Oguri, K ;
Nagayasu, Y ;
Munesue, S ;
Ishihara, M ;
Saiki, I ;
Yonekura, H ;
Yamamoto, H ;
Okayama, M .
EXPERIMENTAL CELL RESEARCH, 2000, 256 (02) :434-444
[26]  
MARYNEN P, 1989, J BIOL CHEM, V264, P7017
[27]   INTEGRIN FUNCTION - MOLECULAR HIERARCHIES OF CYTOSKELETAL AND SIGNALING MOLECULES [J].
MIYAMOTO, S ;
TERAMOTO, H ;
COSO, OA ;
GUTKIND, JS ;
BURBELO, PD ;
AKIYAMA, SK ;
YAMADA, KM .
JOURNAL OF CELL BIOLOGY, 1995, 131 (03) :791-805
[28]   Fibronectin and integrins in cell adhesion, signaling, and morphogenesis [J].
Miyamoto, S ;
Katz, BZ ;
Lafrenie, RM ;
Yamada, KM .
MORPHOGENESIS: CELLULAR INTERACTIONS, 1998, 857 :119-129
[29]   SYNERGISTIC ROLES FOR RECEPTOR OCCUPANCY AND AGGREGATION IN INTEGRIN TRANSMEMBRANE FUNCTION [J].
MIYAMOTO, S ;
AKIYAMA, SK ;
YAMADA, KM .
SCIENCE, 1995, 267 (5199) :883-885
[30]  
MIZUNO K, 1994, J BIOL CHEM, V269, P1131