Trifonova Radiana, Small Deena, Kacer Doreen, Kovalenko Dmitry, Kolev Vihren, Mandinova Anna, Soldi Raffaella, Liaw Lucy, Prudovsky Igor, Maciag Thomas
Center for Molecular Medicine, Maine Medical Center Research Institute, Scarborough, Maine 04074, USA.
J Biol Chem. 2004 Apr 2;279(14):13285-8. doi: 10.1074/jbc.C300564200. Epub 2004 Feb 9.
The interactions between Notch (N) receptors and their transmembrane ligands, Jagged1 (JI) and Delta1 (Dl1), mediate signaling events between neighboring cells that are crucial during embryonal development and in adults. Since the non-transmembrane extracellular form of J1 acts as an antagonist of N activation in NIH 3T3 mouse fibroblast cells and induces fibroblast growth factor 1 (FGF1)-dependent transformation (Small, D., Kovalenko, D., Soldi, R., Mandinova, A., Kolev, V., Trifonova, R., Bagala, C., Kacer, D., Battelli, C., Liaw, L., Prudovsky, I., and Maciag, T. (2003) J. Biol. Chem. 278, 16405-16413), we examined the potential redundant functions of the two subfamilies of Notch ligands and report that while the soluble (s) forms of both Dl1 and J1 act as N signaling antagonists in NIH 3T3 cells, they do display disparate functions. While sJ1 induced an attenuation of cell motility which is accompanied by a decrease in actin stress fibers and an increase in adherence junctions, sDl1 does not. However, sJ1, like sDl1, induces a NIH 3T3 cell tranformed phenotype mediated by FGF signaling. Because the inhibition of N signaling by sJ1 and sDl1 is rescued by dominant-negative Src expression, we suggest that there may be cooperation between the Notch and Src signaling pathways.
Notch(N)受体与其跨膜配体Jagged1(JI)和Delta1(Dl1)之间的相互作用介导相邻细胞间的信号传导事件,这在胚胎发育和成年期都至关重要。由于J1的非跨膜细胞外形式在NIH 3T3小鼠成纤维细胞中作为N激活的拮抗剂,并诱导成纤维细胞生长因子1(FGF1)依赖性转化(Small, D., Kovalenko, D., Soldi, R., Mandinova, A., Kolev, V., Trifonova, R., Bagala, C., Kacer, D., Battelli, C., Liaw, L., Prudovsky, I., and Maciag, T. (2003) J. Biol. Chem. 278, 16405 - 16413),我们研究了Notch配体两个亚家族的潜在冗余功能,并报告虽然Dl1和J1的可溶性(s)形式在NIH 3T3细胞中均作为N信号拮抗剂,但它们确实表现出不同的功能。虽然sJ1诱导细胞运动性减弱,同时伴有肌动蛋白应力纤维减少和黏附连接增加,但sDl1则不然。然而,sJ1与sDl1一样,诱导由FGF信号介导的NIH 3T3细胞转化表型。由于显性负性Src表达可挽救sJ1和sDl1对N信号的抑制作用,我们认为Notch和Src信号通路之间可能存在协同作用。