Laboratory of Structural Biochemistry, Genome Institute of Singapore, 60 Biopolis Street, Singapore.
Nucleic Acids Res. 2010 Jun;38(10):3477-88. doi: 10.1093/nar/gkq046. Epub 2010 Feb 10.
Smad1 is a downstream effector of the BMP signaling pathway that binds regulatory DNA to execute gene expression programs leading to, for example, the maintenance of pluripotency in mice. On the contrary, the TGF-beta-activated Smad3 triggers strikingly different programs such as mesodermal differentiation in early development. Because Smad1 and Smad3 contain identical amino acids at the DNA contact interface it is unclear how they elicit distinctive bioactivities. Here, we report the crystal structure of the MH1 domain of Smad1 bound to a palindromic Smad binding element. Surprisingly, the DNA contact interface of Smad1 is drastically rearranged when compared to Smad3. The N-terminal helix 1 of Smad1 is dislodged from its intramolecular binding site and adopts a domain swapped arrangement with a symmetry-related molecule. As a consequence, helix 2 kinks away from the double helix disabling several key phosphate backbone interactions. Thermal melting analysis corroborates a decompacted conformation of Smad1 and DNA binding assays indicate a lower overall affinity of Smad1 to DNA but increased cooperativity when binding to palindromic DNA motifs. These findings suggest that Smad1 and Smad3 evolved differential qualities to assemble on composite DNA elements and to engage in co-factor interactions by remodeling their N-termini.
Smad1 是 BMP 信号通路的下游效应因子,它与调节性 DNA 结合,执行基因表达程序,例如在小鼠中维持多能性。相反,TGF-β激活的 Smad3 触发截然不同的程序,如早期发育中的中胚层分化。由于 Smad1 和 Smad3 在 DNA 结合界面处含有相同的氨基酸,因此不清楚它们如何产生独特的生物活性。在这里,我们报告了 Smad1 的 MH1 结构域与回文 Smad 结合元件结合的晶体结构。令人惊讶的是,与 Smad3 相比,Smad1 的 DNA 结合界面发生了剧烈的重排。Smad1 的 N 端螺旋 1 从其分子内结合位点脱离,并与对称相关的分子采用结构域交换排列。结果,螺旋 2 远离双螺旋扭曲,使几个关键的磷酸骨架相互作用失效。热融分析证实了 Smad1 的解压缩构象,DNA 结合分析表明 Smad1 与 DNA 的整体亲和力较低,但与回文 DNA 基序结合时协同性增加。这些发现表明,Smad1 和 Smad3 通过重塑其 N 端,进化出不同的特性来组装在复合 DNA 元件上,并参与共因子相互作用。