Nishihara A, Hanai J I, Okamoto N, Yanagisawa J, Kato S, Miyazono K, Kawabata M
Department of Biochemistry, The Cancer Institute, Japanese Foundation for Cancer Research (JFCR), and Research for the Future Program, Japan.
Genes Cells. 1998 Sep;3(9):613-23. doi: 10.1046/j.1365-2443.1998.00217.x.
Smad proteins are novel transcriptional regulators mediating the signalling of the transforming growth factor-beta (TGF-beta) superfamily. Coactivators such as p300/CBP promote transactivation by various transcription factors through a direct interaction with them. Adenoviral oncoprotein E1A, which binds p300, was shown to inhibit the signalling of TGF-beta. These findings raise the possibility that p300 may be involved in TGF-beta signalling.
We investigated whether p300 is involved in transactivation by Smads. p300 enhanced the Smad-induced transactivation of p3TP-Lux, a TGF-beta responsive reporter. E1A inhibited this enhancement, and the inhibition required its ability to bind p300/CBP. p300 and Smad3, as well as Smad2, interacted in vivo in a ligand-dependent manner. The binding region in Smad3 was its C-terminal half that was previously shown to possess an intrinsic transactivation activity. The binding region in p300 was mapped to its C-terminal 678 amino acids. The minimal Smad2/3-interacting region, as well as the rest of the p300, inhibited the transactivation of p3TP-Lux in a dominant-negative fashion.
p300 interacted with Smad2 and Smad3 in a ligand-dependent manner, and enhanced the transactivation by Smads. Our results present the molecular basis of the transactivation by Smad proteins.
Smad蛋白是介导转化生长因子-β(TGF-β)超家族信号传导的新型转录调节因子。诸如p300/CBP之类的共激活因子通过与各种转录因子直接相互作用来促进它们的反式激活。已证明与p300结合的腺病毒癌蛋白E1A可抑制TGF-β的信号传导。这些发现增加了p300可能参与TGF-β信号传导的可能性。
我们研究了p300是否参与Smad的反式激活。p300增强了Smad诱导的p3TP-Lux(一种TGF-β反应性报告基因)的反式激活。E1A抑制了这种增强作用,并且这种抑制作用需要其结合p300/CBP的能力。p300与Smad3以及Smad2在体内以配体依赖的方式相互作用。Smad3中的结合区域是其C末端的一半,先前已证明该区域具有内在的反式激活活性。p300中的结合区域被定位到其C末端的678个氨基酸。最小的Smad2/3相互作用区域以及p300的其余部分以显性负性方式抑制p3TP-Lux的反式激活。
p300以配体依赖的方式与Smad2和Smad3相互作用,并增强了Smad的反式激活。我们的结果揭示了Smad蛋白反式激活的分子基础。