RECOGNITION OF THE A-CHAIN CARBOXY-TERMINAL HEPARIN BINDING REGION OF FIBRONECTIN INVOLVES MULTIPLE SITES - 2 CONTIGUOUS SEQUENCES ACT INDEPENDENTLY TO PROMOTE NEURAL CELL-ADHESION

被引:71
作者
HAUGEN, PK
MCCARTHY, JB
SKUBITZ, APN
FURCHT, LT
LETOURNEAU, PC
机构
[1] UNIV MINNESOTA, MED & PATHOL LAB, MINNEAPOLIS, MN 55455 USA
[2] UNIV MINNESOTA, CTR BIOMED ENGN, MINNEAPOLIS, MN 55455 USA
关键词
D O I
10.1083/jcb.111.6.2733
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Cellular interactions with fibronectin-treated substrata have a complex molecular basis involving multiple domains. A carboxy-terminal cell and heparin binding region of fibronectin (FN) is particularly interesting because it is a strong promoter of neurite outgrowth (Rogers, S. L., J. B. McCarthy, S. L. Palm, L. T. Furcht, and P. C. Letourneau, 1985, J. Neurosci. 5:369-378) and cell attachment (McCarthy, J. B., S. T. Hagen, and L. T. Furcht. 1986. J. Cell Biol. 102:179-188). To further understand the molecular mechanisms of neuronal interactions with this region of FN, we screened two peptides from the 33-kD heparin binding fragment of the FN A chain, FN-C/H II (KNNQKSEPLIGRKKT) and CS1 (Humphries, M. J., A. Komoriya, S. K. Akiyama, K. Olden, and K. M. Yamada. 1987. J. Biol. Chem. 262:6886-6892), for their ability to promote B104 neuroblastoma cell-substratum adhesion and neurite outgrowth. Both FN-C/H II and CS1 promoted B104 cell attachment in a concentration-dependent and saturable manner, with attachment to FN-C/H II exceeding attachment to CS1. In solution, both exogenous FN-C/H II or CS1 partially inhibited cell adhesion to the 33-kD fragment. Similar results were obtained with anti-FN-C/H II antibodies. In contrast, soluble GRGDSP did not affect B104 cell adhesion to FN-C/H II. These results indicate that both FN-C/H II and CS1 represent distinct, RGD-independent, cell adhesion-promoting sites active within the 33-kD fragment, and further define FN-C/H II as a novel neural recognition sequence in FN. B104 adhesion to FN-C/H II and CS1 differs in sensitivity to heparin, yet each peptide inhibited adhesion to the other peptide, suggesting cell adhesion is somehow related at the cellular level. Within the A chain 33-kD fragment, FN-C/H II and CS1 are contiguous, and might represent components of a larger domain with greater neurite-promoting activity since only the 33-kD fragment, and neither individual peptide, was effective at promoting B104 neurite outgrowth. These data further support the hypothesis that cell response to FN are mediated by multiple sites involving both heparin-sensitive and -insensitive mechanisms.
引用
收藏
页码:2733 / 2745
页数:13
相关论文
共 65 条