Research Group Macromolecular Crystallography, Max Planck Institute for Biophysical Chemistry, Am Fassberg 11, 37077 Göttingen, Germany.
H3 Biomedicine, Inc., Cambridge, MA 03129, USA.
Mol Cell. 2018 Apr 19;70(2):265-273.e8. doi: 10.1016/j.molcel.2018.03.011. Epub 2018 Apr 12.
SF3B is a multi-protein complex essential for branch site (BS) recognition and selection during pre-mRNA splicing. Several splicing modulators with antitumor activity bind SF3B and thereby modulate splicing. Here we report the crystal structure of a human SF3B core in complex with pladienolide B (PB), a macrocyclic splicing modulator and potent inhibitor of tumor cell proliferation. PB stalls SF3B in an open conformation by acting like a wedge within a hinge, modulating SF3B's transition to the closed conformation needed to form the BS adenosine-binding pocket and stably accommodate the BS/U2 duplex. This work explains the structural basis for the splicing modulation activity of PB and related compounds, and reveals key interactions between SF3B and a common pharmacophore, providing a framework for future structure-based drug design.
SF3B 是一种多蛋白复合物,对于前体 mRNA 剪接过程中的分支位点(BS)识别和选择至关重要。几种具有抗肿瘤活性的剪接调节剂与 SF3B 结合,从而调节剪接。本文报道了人 SF3B 核心与 pladienolide B(PB)的复合物的晶体结构,PB 是一种环状剪接调节剂,也是一种有效的肿瘤细胞增殖抑制剂。PB 通过充当铰链中的楔形物发挥作用,将 SF3B 阻滞在开放构象中,从而调节 SF3B 向形成 BS 腺苷结合口袋和稳定容纳 BS/U2 双链所需的封闭构象的转变。这项工作解释了 PB 及相关化合物的剪接调节活性的结构基础,并揭示了 SF3B 与常见药效团之间的关键相互作用,为基于结构的药物设计提供了框架。