Department of Biochemistry, University of Yamanashi, Yamanashi 409-3898, Japan.
J Biol Chem. 2013 Jun 28;288(26):18911-22. doi: 10.1074/jbc.M113.480996. Epub 2013 May 17.
Transforming growth factor (TGF)-β plays crucial roles in embryonic development and adult tissue homeostasis by eliciting various cellular responses in target cells. TGF-β signaling is principally mediated through receptor-activated Smad proteins, which regulate expression of target genes in cooperation with other DNA-binding transcription factors (Smad cofactors). In this study, we found that the basic helix-loop-helix transcription factor Olig1 is a Smad cofactor involved in TGF-β-induced cell motility. Knockdown of Olig1 attenuated TGF-β-induced cell motility in chamber migration and wound healing assays. In contrast, Olig1 knockdown had no effect on bone morphogenetic protein-induced cell motility, TGF-β-induced cytostasis, or epithelial-mesenchymal transition. Furthermore, we observed that cooperation of Smad2/3 with Olig1 is regulated by a peptidyl-prolyl cis/trans-isomerase, Pin1. TGF-β-induced cell motility, induction of Olig1-regulated genes, and physical interaction between Smad2/3 and Olig1 were all inhibited after knockdown of Pin1, indicating a novel mode of regulation of Smad signaling. We also found that Olig1 interacts with the L3 loop of Smad3. Using a synthetic peptide corresponding to the L3 loop of Smad3, we succeeded in selectively inhibiting TGF-β-induced cell motility. These findings may lead to a new strategy for selective regulation of TGF-β-induced cellular responses.
转化生长因子 (TGF)-β 通过在靶细胞中引发各种细胞反应,在胚胎发育和成人组织稳态中发挥关键作用。TGF-β 信号主要通过受体激活的 Smad 蛋白介导,Smad 蛋白与其他 DNA 结合转录因子(Smad 共因子)合作调节靶基因的表达。在这项研究中,我们发现碱性螺旋-环-螺旋转录因子 Olig1 是一种参与 TGF-β 诱导的细胞迁移的 Smad 共因子。Olig1 的敲低减弱了腔室迁移和划痕愈合测定中 TGF-β 诱导的细胞迁移。相比之下,Olig1 的敲低对骨形态发生蛋白诱导的细胞迁移、TGF-β 诱导的细胞静止或上皮-间充质转化没有影响。此外,我们观察到 Smad2/3 与 Olig1 的合作受肽脯氨酰顺/反异构酶 Pin1 调节。Pin1 敲低后,TGF-β 诱导的细胞迁移、Olig1 调节基因的诱导以及 Smad2/3 和 Olig1 之间的物理相互作用均受到抑制,表明 Smad 信号的一种新调节模式。我们还发现 Olig1 与 Smad3 的 L3 环相互作用。使用对应于 Smad3 的 L3 环的合成肽,我们成功地选择性抑制了 TGF-β 诱导的细胞迁移。这些发现可能为选择性调节 TGF-β 诱导的细胞反应提供新策略。