van Ingen Hugo, Baltussen Maria A H, Aelen Jan, Vuister Geerten W
Department of Physical Chemistry/Biophysical Chemistry, Institute for Molecules and Materials, Radboud University Nijmegen, Toernooiveld 1, 6525 ED Nijmegen, the Netherlands.
J Mol Biol. 2006 Apr 28;358(2):485-97. doi: 10.1016/j.jmb.2006.01.100. Epub 2006 Feb 13.
The co-repressor Sin3 is the essential scaffold protein of the Sin3/HDAC co-repressor complex, which is recruited to the DNA by a diverse group of transcriptional repressors, targeting genes involved in the regulation of the cell cycle, proliferation and differentiation. Sin3 contains four repeats commonly denoted as paired amphipathic helix (PAH1-4) domains that provide the principal interaction surface for various repressors. Here, we present the first structure of the free state of the PAH2 domain and discuss its implications for interaction with the repressors. The unbound conformation is very similar to the conformation observed when bound to either the Mad1 or HBP1 repressor, suggesting that the PAH2 domain serves as a template that guides proper folding of the unstructured repressor. The free PAH2 domain shows micro- to millisecond conformational exchange between the folded, major state and a partially unfolded, minor state. Upon complex formation, we observe a significant decrease in fast time-scale flexibility of local regions of the protein, correlated with the formation of intermolecular contacts, and an overall decrease in the slow time-scale conformational exchange. On the basis of our data and using a multiple sequence alignment of all PAH domains, we suggest that the PAH1, PAH2 and PAH3 domains form pre-folded binding modules in full-length Sin3 like beads-on-a-string, and act as folding templates for the interaction domains of their targets.
共抑制因子Sin3是Sin3/HDAC共抑制复合物的关键支架蛋白,它由多种转录抑制因子招募至DNA,作用于参与细胞周期、增殖和分化调控的基因。Sin3包含四个通常被称为配对两性螺旋(PAH1 - 4)结构域的重复序列,这些结构域为各种抑制因子提供了主要的相互作用表面。在此,我们展示了PAH2结构域自由状态的首个结构,并讨论了其与抑制因子相互作用的意义。未结合状态的构象与结合Mad1或HBP1抑制因子时观察到的构象非常相似,这表明PAH2结构域充当了引导无结构抑制因子正确折叠的模板。自由的PAH2结构域在折叠的主要状态和部分未折叠的次要状态之间表现出微秒到毫秒级的构象交换。在形成复合物后,我们观察到蛋白质局部区域在快速时间尺度上的灵活性显著降低,这与分子间接触的形成相关,并且在慢速时间尺度上的构象交换总体减少。基于我们的数据并使用所有PAH结构域的多序列比对,我们认为PAH1、PAH2和PAH3结构域在全长Sin3中像串珠一样形成预折叠的结合模块,并作为其靶标相互作用结构域的折叠模板。