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Smad3在人正常肺上皮细胞中诱导细胞凋亡以及对TGF-β反应时Smad3表达的下调。

Induction of apoptosis by Smad3 and down-regulation of Smad3 expression in response to TGF-beta in human normal lung epithelial cells.

作者信息

Yanagisawa K, Osada H, Masuda A, Kondo M, Saito T, Yatabe Y, Takagi K, Takahashi T, Takahashi T

机构信息

Laboratory of Ultrastructure Research, Aichi Cancer Center Research Institute, Nagoya, Japan.

出版信息

Oncogene. 1998 Oct 1;17(13):1743-7. doi: 10.1038/sj.onc.1202052.

Abstract

Smad family members are essential intracellular signaling components of the transforming growth factor-beta (TGF-beta) superfamily involved in a range of biological activities. Two highly homologous molecules, Smad2 and Smad3, have so far been identified as receptor-activated Smads for TGF-beta signaling and have become the focus of intensive studies. However, no definite differences in regulation or function have been established between these TGF-beta signaling molecules. In the present study, we show that the expression of Smad3, but not its close relative, Smad2, is down-regulated by TGF-beta mediated signals themselves in human lung epithelial cells. This down-regulation of Smad3 by TGF-beta treatment did not appear to result from shortening of the half-life of Smad3 mRNA. Constitutive expression of Smad3 in the presence of TGF-beta induced apoptotic cell death, with an adverse effect on the cell growth of human lung epithelial cells. Apoptotic cell death could also be induced by forced expression of Smad2 in the presence of TGF-beta, but less efficiently than by that of Smad3. These findings clearly define the distinctions between Smad2 and Smad3 for the first time in that a qualitative difference was observed with regard to the regulation of their expression in response to TGF-beta, while Smad2 and Smad3 appeared to have quantitatively different capabilities regarding the induction of apoptotic cell death in human lung epithelial cells.

摘要

Smad家族成员是转化生长因子-β(TGF-β)超家族重要的细胞内信号转导成分,参与一系列生物学活性。到目前为止,已鉴定出两个高度同源的分子Smad2和Smad3,作为TGF-β信号的受体激活型Smad,成为深入研究的焦点。然而,这些TGF-β信号分子在调节或功能上尚未明确差异。在本研究中,我们发现,在人肺上皮细胞中,TGF-β介导的信号本身可下调Smad3的表达,而与其关系密切的Smad2则不然。TGF-β处理对Smad3的这种下调作用似乎并非源于Smad3 mRNA半衰期的缩短。在TGF-β存在的情况下,Smad3的组成型表达诱导凋亡性细胞死亡,对人肺上皮细胞的生长产生不利影响。在TGF-β存在的情况下,强制表达Smad2也可诱导凋亡性细胞死亡,但效率低于Smad3。这些发现首次明确了Smad2和Smad3之间的差异,即观察到它们在对TGF-β反应的表达调节方面存在质的差异,而在诱导人肺上皮细胞凋亡性细胞死亡方面,Smad2和Smad3似乎存在量的不同能力。

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