Departments of Chemistry andBiophysics, and.
Departments of Chemistry and.
Proc Natl Acad Sci U S A. 2014 Aug 19;111(33):12067-72. doi: 10.1073/pnas.1405831111. Epub 2014 Jul 7.
The kinase-inducible domain interacting (KIX) domain of the CREB binding protein (CBP) is capable of simultaneously binding two intrinsically disordered transcription factors, such as the mixed-lineage leukemia (MLL) and c-Myb peptides, at isolated interaction sites. In vitro, the affinity for binding c-Myb is approximately doubled when KIX is in complex with MLL, which suggests a positive cooperative binding mechanism, and the affinity for MLL is also slightly increased when KIX is first bound by c-Myb. Expanding the scope of recent NMR and computational studies, we explore the allosteric mechanism at a detailed molecular level that directly connects the microscopic structural dynamics to the macroscopic shift in binding affinities. To this end, we have performed molecular dynamics simulations of free KIX, KIX-c-Myb, MLL-KIX, and MLL-KIX-c-Myb using a topology-based Gō-like model. Our results capture an increase in affinity for the peptide in the allosteric site when KIX is prebound by a complementary effector and both peptides follow an effector-independent folding-and-binding mechanism. More importantly, we discover that MLL binding lowers the entropic cost for c-Myb binding, and vice versa, by stabilizing the L12-G2 loop and the C-terminal region of the α3 helix on KIX. This work demonstrates the importance of entropy in allosteric signaling between promiscuous molecular recognition sites and can inform the rational design of small molecule stabilizers to target important regions of conformationally dynamic proteins.
CREB 结合蛋白 (CBP) 的激酶诱导结构域相互作用 (KIX) 结构域能够同时结合两个固有无序的转录因子,如混合谱系白血病 (MLL) 和 c-Myb 肽,在孤立的相互作用位点上。在体外,当 KIX 与 MLL 复合时,与 c-Myb 的结合亲和力大约增加一倍,这表明存在正协同结合机制,而当 KIX 首先与 c-Myb 结合时,与 MLL 的亲和力也略有增加。扩展最近 NMR 和计算研究的范围,我们在详细的分子水平上探索变构机制,将微观结构动力学直接与结合亲和力的宏观变化联系起来。为此,我们使用基于拓扑的 Gō 样模型对游离 KIX、KIX-c-Myb、MLL-KIX 和 MLL-KIX-c-Myb 进行了分子动力学模拟。我们的结果表明,当 KIX 被互补效应物预先结合时,变构位点上的肽亲和力增加,并且两种肽都遵循效应物独立的折叠-结合机制。更重要的是,我们发现 MLL 结合降低了 c-Myb 结合的熵成本,反之亦然,通过稳定 KIX 上的 L12-G2 环和 α3 螺旋的 C 端区域。这项工作证明了在混杂的分子识别位点之间变构信号中熵的重要性,并为合理设计小分子稳定剂以靶向构象动态蛋白质的重要区域提供了信息。