Shimon I, Hüttner A, Said J, Spirina O M, Melmed S
Department of Medicine, Cedars-Sinai Research Institute, UCLA School of Medicine 90048, USA.
J Clin Invest. 1996 Jan 1;97(1):187-95. doi: 10.1172/JCI118388.
We have shown previously that human prolactinomas express transforming sequences of the heparin-binding secretory transforming gene (hst) which encodes fibroblast growth factor-4 (FGF-4). To elucidate the role of hst in pituitary tumorigenesis we treated primary rat pituitary and pituitary tumor cell cultures with recombinant FGF-4 and also stably transfected pituitary cell lines with full-length human hst cDNA. Transfectants were screened for hst mRNA expression and FGF-4 production. FGF-4 (0.1-50 ng/ml) caused a dose-dependent 2.5-fold increase of prolactin (PRL) secretion (P < 0.001) in GH4 cells and up to 60% (P < 0.05) in primary cultures, while decreasing growth hormone release (P < 0.001). GH4 hst transfectants displayed markedly enhanced basal PRL secretion (threefold, P < 0.001) and also proliferated faster (P < 0.001). FGF-4 treatment of wild-type GH4 cells, transiently transfected with an expression construct (rPRL.luc) containing a luciferase reporter driven by the rPRL promoter, resulted in a dose-dependent increase of up to 3.3-fold in PRL transcriptional activity. Tumors derived from in vivo subcutaneous injection of GH4 hst-transfected cells strongly expressing FGF-4 grew more aggressively as assessed by histologic invasiveness and proliferating cell nuclear antigen staining (P < 0.01). The results indicate that hst overexpression mediates lactotrope tumor growth and potently stimulates PRL synthesis. Thus, hst may directly facilitate prolactinoma development via paracrine or autocrine action of its secreted protein, FGF-4.
我们之前已经表明,人类催乳素瘤表达肝素结合分泌转化基因(hst)的转化序列,该基因编码成纤维细胞生长因子-4(FGF-4)。为了阐明hst在垂体肿瘤发生中的作用,我们用重组FGF-4处理原代大鼠垂体和垂体肿瘤细胞培养物,并用全长人hst cDNA稳定转染垂体细胞系。筛选转染子的hst mRNA表达和FGF-4产生情况。FGF-4(0.1 - 50 ng/ml)导致GH4细胞中催乳素(PRL)分泌呈剂量依赖性增加2.5倍(P < 0.001),在原代培养物中增加高达60%(P < 0.05),同时生长激素释放减少(P < 0.001)。GH4 hst转染子显示基础PRL分泌明显增强(三倍,P < 0.001),增殖也更快(P < 0.001)。用含有由rPRL启动子驱动的荧光素酶报告基因的表达构建体(rPRL.luc)瞬时转染野生型GH4细胞后,用FGF-4处理导致PRL转录活性剂量依赖性增加高达3.3倍。通过组织学侵袭性和增殖细胞核抗原染色评估,源自体内皮下注射强烈表达FGF-4的GH4 hst转染细胞的肿瘤生长更具侵袭性(P < 0.01)。结果表明,hst过表达介导催乳素细胞肿瘤生长并有力地刺激PRL合成。因此,hst可能通过其分泌蛋白FGF-4的旁分泌或自分泌作用直接促进催乳素瘤的发展。