Chen Wen-Bin, Lenschow Wolfgang, Tiede Karen, Fischer Jens W, Kalthoff Holger, Ungefroren Hendrik
Research Unit Molecular Oncology, Clinic for General Surgery and Thoracic Surgery, Christian-Albrechts-University, D-24105 Kiel, Germany.
J Biol Chem. 2002 Sep 27;277(39):36118-28. doi: 10.1074/jbc.M203709200. Epub 2002 Jul 24.
Overexpression of the small leucine-rich proteoglycan biglycan (BGN) in fibrosis and desmoplasia results from enhanced activity of transforming growth factor-beta (TGF-beta). In pancreatic adenocarcinoma, the tumor cells themselves may contribute to BGN synthesis in vivo, since 8 of 18 different pancreatic carcinoma cell lines constitutively expressed BGN mRNA, as shown by reverse transcription-PCR analysis. In PANC-1 cells, TGF-beta1 dramatically stimulated BGN mRNA accumulation through a BGN transcription-independent, cycloheximide-sensitive mechanism and strongly increased the synthesis and release of the proteoglycan form of BGN. The ability of TGF-beta1 to induce BGN mRNA was critically dependent on Smad signaling, since 1) the up-regulation of BGN mRNA was preceded by a marked increase in Smad2 phosphorylation in TGF-beta1-treated PANC-1 cells, 2) TGF-beta1 was unable to induce BGN mRNA in pancreatic carcinoma cell lines that carry homozygous deletions of the Smad4/DPC4 gene, 3) inhibition of the Smad pathway in PANC-1 cells by transfection with a dominant negative Smad4/DPC4 mutant significantly reduced TGF-beta1-induced BGN mRNA expression, 4) stable reintroduction of wild type Smad4/DPC4 into Smad4-null CFPAC-1 cells restored the TGF-beta1 effect, and 5) overexpression of Smad2 and Smad3 in PANC-1 cells augmented TGF-beta1 induction of BGN mRNA, whereas forced expression of Smad7, an inhibitory Smad, effectively blocked it. These results clearly show that a functional Smad pathway is crucial for TGF-beta regulation of BGN mRNA expression. Since BGN has been shown to inhibit growth of pancreatic cancer cells, the Smad4/DPC4 mediation of the TGF-beta effect may represent a novel tumor suppressor function for Smad4/DPC4: antiproliferation via expression of autoinhibitory BGN.
富含亮氨酸的小分子蛋白聚糖双糖链蛋白聚糖(BGN)在纤维化和促结缔组织增生中过表达是由转化生长因子-β(TGF-β)活性增强所致。在胰腺腺癌中,肿瘤细胞自身可能在体内促进BGN合成,因为逆转录 - PCR分析显示,18种不同胰腺癌细胞系中有8种组成性表达BGN mRNA。在PANC - 1细胞中,TGF - β1通过一种不依赖BGN转录、对放线菌酮敏感的机制显著刺激BGN mRNA积累,并强烈增加BGN蛋白聚糖形式的合成与释放。TGF - β1诱导BGN mRNA的能力关键依赖于Smad信号传导,因为:1)在TGF - β1处理的PANC - 1细胞中,BGN mRNA上调之前Smad2磷酸化显著增加;2)TGF - β1无法在携带Smad4/DPC4基因纯合缺失的胰腺癌细胞系中诱导BGN mRNA;3)用显性负性Smad4/DPC4突变体转染PANC - 1细胞抑制Smad途径,可显著降低TGF - β1诱导的BGN mRNA表达;4)将野生型Smad4/DPC4稳定重新导入Smad4缺失的CFPAC - 1细胞可恢复TGF - β1效应;5)在PANC - 1细胞中过表达Smad2和Smad3增强TGF - β1对BGN mRNA的诱导作用,而强制表达抑制性Smad7则有效阻断该作用。这些结果清楚地表明,功能性Smad途径对于TGF - β调节BGN mRNA表达至关重要。由于BGN已被证明可抑制胰腺癌细胞生长,Smad4/DPC4介导的TGF - β效应可能代表Smad4/DPC4一种新的肿瘤抑制功能:通过自抑制性BGN的表达实现抗增殖作用。