From the Medical Research Council Laboratory of Molecular Biology, Hills Road, Cambridge CB2 0QH, United Kingdom and.
Biochemie-Zentrum der Universität Heidelberg, INF328, D-69120 Heidelberg, Germany.
J Biol Chem. 2010 Feb 5;285(6):3850-3856. doi: 10.1074/jbc.M109.070839. Epub 2009 Dec 9.
Sus1 is a central component of the yeast gene gating machinery, the process by which actively transcribing genes such as GAL1 become associated with nuclear pore complexes. Sus1 is a component of both the SAGA transcriptional co-activator complex and the TREX-2 complex that binds to nuclear pore complexes. TREX-2 contains two Sus1 chains that have an articulated helical hairpin fold, enabling them to wrap around an extended alpha-helix in Sac3, following a helical hydrophobic stripe. In SAGA, Sus1 binds to Sgf11 and has been proposed to provide a link between SAGA and TREX-2. We present here the crystal structure of the complex between Sus1 and the N-terminal region of Sgf11 that forms an extended alpha-helix around which Sus1 wraps in a manner that shares some similarities with the Sus1-Sac3 interface in TREX-2. However, the Sus1-binding site on Sgf11 is somewhat shorter than on Sac3 and is based on a narrower hydrophobic stripe. Engineered mutants that disrupt the Sgf11-Sus1 interaction in vitro confirm the importance of the hydrophobic helical stripe in molecular recognition. Helix alpha1 of the Sus1-articulated hairpin does not bind directly to Sgf11 and adopts a wide range of conformations within and between crystal forms, consistent with the presence of a flexible hinge and also with results from previous extensive mutagenesis studies (Klöckner, C., Schneider, M., Lutz, S., Jani, D., Kressler, D., Stewart, M., Hurt, E., and Köhler, A. (2009) J. Biol. Chem. 284, 12049-12056). A single Sus1 molecule cannot bind Sgf11 and Sac3 simultaneously and this, combined with the structure of the Sus1-Sgf11 complex, indicates that Sus1 forms separate subcomplexes within SAGA and TREX-2.
Sus1 是酵母基因门控机制的核心组成部分,该过程使诸如 GAL1 等活跃转录的基因与核孔复合物相关联。Sus1 是 SAGA 转录共激活复合物和与核孔复合物结合的 TREX-2 复合物的组成部分。TREX-2 包含两条具有铰接式螺旋发夹折叠的 Sus1 链,使它们能够围绕 Sac3 中的延伸α-螺旋缠绕,遵循螺旋疏水性条纹。在 SAGA 中,Sus1 与 Sgf11 结合,并被提议为 SAGA 和 TREX-2 之间的连接。我们在此展示了 Sus1 与 Sgf11 的 N 端区域之间形成延伸α-螺旋的复合物的晶体结构,Sus1 以与 TREX-2 中 Sus1-Sac3 界面共享一些相似的方式缠绕在该螺旋周围。然而,Sgf11 上的 Sus1 结合位点比 Sac3 上的稍短,并且基于较窄的疏水性条纹。在体外破坏 Sgf11-Sus1 相互作用的工程突变体证实了分子识别中疏水性螺旋条纹的重要性。Sus1 铰接发夹的α1 螺旋不直接与 Sgf11 结合,并在晶体形式内和之间采用广泛的构象,这与存在柔性铰链以及先前广泛的诱变研究结果一致(Klöckner,C., Schneider,M.,Lutz,S.,Jani,D.,Kressler,D.,Stewart,M.,Hurt,E.,和 Köhler,A.(2009)J. Biol. Chem. 284,12049-12056)。单个 Sus1 分子不能同时结合 Sgf11 和 Sac3,这与 Sus1-Sgf11 复合物的结构相结合,表明 Sus1 在 SAGA 和 TREX-2 中形成单独的亚复合物。