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人成纤维细胞生长因子1-Ⅲb受体亚型在胰腺导管细胞增殖中的作用及对蛋白激酶的调节
作者姓名:Liu ZB  Yang YM  Qiao QL  Wan YL  Kornmann M  Huang YT
作者单位:1. 100034,北京大学第一医院外科
2. 德国ULM大学外科
基金项目:德国科研协会(SFB518)基金资助项目;美国国家癌症研究院(CA-40162)基金资助项目
摘    要:目的探讨人类成纤维细胞生长因子受体1的Ⅲb亚型(FGFR1-Ⅲb)在TAKA-1胰腺导管细胞增殖中的作用及对有丝分裂激活的蛋白激酶(MAPK)的调节。方法以脂质体法将人类全长FGFR1-Ⅲb表达质粒pSVK4/FGFR1-Ⅲb稳定转染入TAKA-1胰腺导管细胞,采用Western印迹、Northern印迹、免疫荧光和糖基化分析等方法鉴定FGFR1-Ⅲb在TAKA-1细胞中的表达、分布和结构特征,并以生长因子刺激转染细胞,通过MTY法及MAPK分析,观察FGFR1-HIb受体在胰腺导管细胞中的功能及作用机理。结果FGFR1-Ⅲb受体是位于120000和130~150000之间的糖基化受体,在细胞膜表面和胞浆中为中等强度表达,在胞浆的核周围区为高表达,细胞核内不表达。FGF-1、-2和-4能够明显促进转染FGFR1-Ⅲb基因的TAKA-1细胞的生长,同时能够明显增强p44/p42MAPK的磷酸化。结论人类FGFR1-Ⅲb受体在胰腺导管细胞中为功能性受体,FGF-1、-2和4能够促进转染FGFR1-Ⅲb基因的TAKA-1细胞的增殖,其机制为促进p44/p42MAPK的磷酸化。

关 键 词:成纤维细胞生长因子  TAKA-1胰腺导管细胞  增殖  蛋白激酶
收稿时间:2006-07-31
修稿时间:2006-07-31

The role of human fibroblast growth factor receptor 1-IIIb isoform in proliferation of pancreatic ductal cells and its effects to mitogen-activated protein kinase
Liu ZB,Yang YM,Qiao QL,Wan YL,Kornmann M,Huang YT.The role of human fibroblast growth factor receptor 1-IIIb isoform in proliferation of pancreatic ductal cells and its effects to mitogen-activated protein kinase[J].National Medical Journal of China,2006,86(40):2812-2816.
Authors:Liu Zhan-bing  Yang Yin-mo  Qiao Qi-lu  Wan Yuan-lian  Kornmann Marko  Huang Yan-ting
Institution:Department of General Surgery, Peking University First Hospital, Peking University, Beijing 100034, China
Abstract:OBJECTIVE: To study the role of IIIb isoform of human fibroblast growth factor receptor 1 (FGFR1-IIIb) in proliferation of pancreatic ductal cells and its effects on mitogen-activated protein kinase (MAPK). METHODS: Human pancreatic ductal cells of the line TAKA-1 were cultured. The plasmid of human full-length FGFR1-IIIb isoform, pSVK4/FGFR1-IIIb, was stable transfected into the cultured TAKA-1 pancreatic ductal cells facilitated by lipofectamine. Un-transfected TAKA-1 cells and TAKA-1 ductal cells transfected with blank plasmid were used as controls. The expression, distribution and character of protein of FGFR1-IIIb in the TAKA-1 cells were estimated by Western blotting, Northern blotting, immunofluorescence assay, and glycosylation assay. The function and mechanism of FGFR1-IIIb in the transfected pancreatic ductal cells stimulated by FGF were examined by MTT assay and MAPK assay. Tunicamycin, an inhibitor of N-terminal glycoprotein synthesis, was added into the culture fluid of the FGFR1-IIIb transfected TAKA-1 cells to observe the changes of the FGFR1 bands. RESULTS: FGFR1-IIIb, a glycosylated receptor at various levels at 120 kDa and between 130 - 150 kDa, was localized at moderate levels at the cell membrane and cytoplasm and at higher level in the perinuclear region of the cytoplasm of the pSVK4/FGFR1-IIIb-transfected cells. FGF-1, -2, and -4 significantly increased the growth of FGFR1-IIIb-transfected TAKA-1 cells, and at the same time induced the p44/p42 MAPK phosphorylation. CONCLUSION: Human FGFR1-IIIb receptor is a functional receptor in pancreatic ductal cells. FGF-1, -2, and -4 can increase the growth of FGFR1-IIIb-transfected pancreatic ductal cells, and the mechanism is that they can induce the p44/p42 MAPK phosphorylation.
Keywords:FGFRI-lUb  TAKA-1 pancreatic ductal cell  Proliferation  MAPK
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