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一种新的肝癌细胞系Hep40中的生长控制与基因表达:维生素K的抑制作用

Growth control and gene expression in a new hepatocellular carcinoma cell line, Hep40: inhibitory actions of vitamin K.

作者信息

Bouzahzah B, Nishikawa Y, Simon D, Carr B I

机构信息

Pittsburgh Transplantation Institute, Department of Surgery, University of Pittsburgh, Pennsylvania 15213, USA.

出版信息

J Cell Physiol. 1995 Dec;165(3):459-67. doi: 10.1002/jcp.1041650303.

Abstract

The growth characteristics of a newly established cell line, Hep40, derived from a human hepatoma are described. An absolute requirement was found for serum to mediate cell growth. Neither EGF, TGF-alpha, nor HGF altered cell growth in the presence or absence of serum. A partial suppression of cell growth was achieved by several TGF-beta family proteins. Affinity crosslinking gels using 125I-labeled TGF-beta showed a significant decrease in the TGF-beta cell-surface type II receptor in Hep40 cells, compared to the TGF-beta-sensitive Hep3B cell line. However, growth could be completely suppressed by addition of vitamins K to the culture medium in both Hep40 and several other hepatoma cell lines. Growth suppression by vitamins K was accompanied by an increased level of transcripts for c-myc, c-jun, and prothrombin genes, in contrast to the actions of TGF-beta 1 protein, which caused a decrease in the level of c-myc transcripts. These data show that this new human hepatoma cell line has partial resistance to growth inhibition by TGF-beta with a unique TGF-beta receptor defect. However, growth was completely suppressed by vitamins K. The differing gene expression patterns in response to TGF-beta as compared to vitamin K suggest that these two growth inhibitors act through differing pathways.

摘要

本文描述了一种新建立的源自人肝癌的细胞系Hep40的生长特性。研究发现细胞生长绝对需要血清介导。无论有无血清,表皮生长因子(EGF)、转化生长因子α(TGF-α)或肝细胞生长因子(HGF)均不改变细胞生长。几种转化生长因子β(TGF-β)家族蛋白可部分抑制细胞生长。与对TGF-β敏感的Hep3B细胞系相比,使用125I标记的TGF-β进行亲和交联凝胶分析显示,Hep40细胞中TGF-β细胞表面II型受体显著减少。然而,在Hep40和其他几种肝癌细胞系中,向培养基中添加维生素K可完全抑制细胞生长。与TGF-β1蛋白导致c-myc转录水平降低的作用相反,维生素K抑制生长伴随着c-myc、c-jun和凝血酶原基因转录水平的升高。这些数据表明,这种新的人肝癌细胞系对TGF-β介导的生长抑制具有部分抗性,并存在独特的TGF-β受体缺陷。然而,维生素K可完全抑制其生长。与维生素K相比,TGF-β引起的不同基因表达模式表明这两种生长抑制剂通过不同途径发挥作用。

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