Kim Dae-Won, Lassar Andrew B
Department of Biological Chemistry and Molecular Pharmacology, Harvard Medical School, Boston, Massachusetts 02115, USA.
Mol Cell Biol. 2003 Dec;23(23):8704-17. doi: 10.1128/MCB.23.23.8704-8717.2003.
We have previously shown that Nkx3.2, a transcriptional repressor that is expressed in the sclerotome and developing cartilage, can activate the chondrocyte differentiation program in somitic mesoderm in a bone morphogenetic protein (BMP)-dependent manner. In this work, we elucidate how BMP signaling modulates the transcriptional repressor activity of Nkx3.2. We have found that Nkx3.2 forms a complex, in vivo, with histone deacetylase 1 (HDAC1) and Smad1 and -4 in a BMP-dependent manner. The homeodomain and NK domain of Nkx3.2 support the interaction of this transcription factor with HDAC1 and Smad1, respectively, and both of these domains are required for the transcriptional repressor activity of Nkx3.2. Furthermore, the recruitment of an HDAC/Sin3A complex to Nkx3.2 requires that Nkx3.2 interact with Smad1 and -4. Indeed, Nkx3.2 both fails to associate with the HDAC/Sin3A complex and represses target gene transcription in a cell line lacking Smad4, but it performs these functions if exogenous Smad4 is added to these cells. While prior work has indicated that BMP-dependent Smads can support transcriptional activation, our findings indicate that BMP-dependent Smads can also potentiate transcriptional repression, depending upon the identity of the Smad-interacting transcription factor.
我们之前已经表明,Nkx3.2是一种在生骨节和发育中的软骨中表达的转录抑制因子,它能以骨形态发生蛋白(BMP)依赖的方式激活体节中胚层的软骨细胞分化程序。在这项研究中,我们阐明了BMP信号如何调节Nkx3.2的转录抑制活性。我们发现,Nkx3.2在体内以BMP依赖的方式与组蛋白去乙酰化酶1(HDAC1)以及Smad1和Smad4形成复合物。Nkx3.2的同源结构域和NK结构域分别支持该转录因子与HDAC1和Smad1的相互作用,并且这两个结构域都是Nkx3.2转录抑制活性所必需的。此外,HDAC/Sin3A复合物向Nkx3.2的募集要求Nkx3.2与Smad1和Smad4相互作用。实际上,在缺乏Smad4的细胞系中,Nkx3.2既无法与HDAC/Sin3A复合物结合,也不能抑制靶基因转录,但如果向这些细胞中添加外源性Smad4,它就能执行这些功能。虽然先前的研究表明BMP依赖的Smads可以支持转录激活,但我们的研究结果表明,取决于与之相互作用的Smad转录因子的特性,BMP依赖的Smads也可以增强转录抑制作用。