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首页> 外文期刊>Carcinogenesis >Differential role of Sloan–Kettering Institute (Ski) protein in Nodal and transforming growth factor-beta (TGF-β)-induced Smad signaling in prostate cancer cells
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Differential role of Sloan–Kettering Institute (Ski) protein in Nodal and transforming growth factor-beta (TGF-β)-induced Smad signaling in prostate cancer cells

机译:Sloan-Kettering Institute(Ski)蛋白在淋巴结和转化生长因子-β(TGF-β)诱导的前列腺癌细胞中的Smad信号传导中的差异作用

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摘要

Transforming growth factor-beta (TGF-β) signaling pathways contain both tumor suppressor and tumor promoting activities. We have demonstrated that Nodal, another member of the TGF-β superfamily, and its receptors are expressed in prostate cancer cells. Nodal and TGF-β exerted similar biological effects on prostate cells; both inhibited proliferation in WPE, RWPE1 and DU145 cells, whereas neither had any effect on the proliferation of LNCaP or PC3 cells. Interestingly, Nodal and TGF-β induced migration in PC3 cells, but not in DU145 cells. TGF-β induced predominantly phosphorylation of Smad3, whereas Nodal induced phosphorylation of only Smad2. We also determined the expression and differential role of Ski, a corepressor of Smad2/3, in Nodal and TGF-β signaling in prostate cancer cells. Similar levels of Ski mRNA were found in several established prostate cell lines; however, high levels of Ski protein were only detected in prostate cancer cells and prostate cancer tissue samples. Exogenous Nodal and TGF-β had no effects on Ski mRNA levels. On the other hand, TGF-β induced a rapid degradation of Ski protein mediated by the proteasomal pathway, whereas Nodal had no effect on Ski protein. Reduced Ski levels correlated with increased basal and TGF-β-induced Smad2/3 phosphorylation. Knockdown of endogenous Ski reduced proliferation in DU145 cells and enhanced migration of PC3 cells. We conclude that high levels of Ski expression in prostate cancer cells may be responsible for repression of TGF-β and Smad3 signaling, but Ski protein levels do not influence Nodal and Smad2 signaling.
机译:转化生长因子-β(TGF-β)信号转导通路既包含抑癌活性,又包含促肿瘤活性。我们已经证明,Tdal-β超家族的另一个成员Nodal及其受体在前列腺癌细胞中表达。 Nodal和TGF-β对前列腺细胞具有相似的生物学作用。两者均抑制了WPE,RWPE1和DU145细胞的增殖,而对LNCaP或PC3细胞的增殖均无影响。有趣的是,Nodal和TGF-β诱导PC3细胞迁移,但不诱导DU145细胞迁移。 TGF-β主要诱导Smad3磷酸化,而Nodal仅诱导Smad2磷酸化。我们还确定了Smad2 / 3的核心加压因子Ski在前列腺癌细胞的Nodal和TGF-β信号传导中的表达和差异作用。在几种已建立的前列腺细胞系中发现了相似水平的Ski mRNA。然而,仅在前列腺癌细胞和前列腺癌组织样品中检测到高水平的Ski蛋白。外源性节点和TGF-β对Ski mRNA水平没有影响。另一方面,TGF-β诱导了由蛋白酶体途径介导的Ski蛋白的快速降解,而Nodal对Ski蛋白没有影响。滑雪水平降低与基础和TGF-β诱导的Smad2 / 3磷酸化增加相关。击倒内源性Ski减少了DU145细胞的增殖并增强了PC3细胞的迁移。我们得出的结论是,前列腺癌细胞中高水平的Ski表达可能是TGF-β和Smad3信号通路抑制的原因,但是Ski蛋白水平并不影响Nodal和Smad2信号通路。

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