Center for Proteomics and Department of Pharmacology, Case Western Reserve University, Cleveland, Ohio, 44106-4988.
Proteins. 2013 Nov;81(11):1900-9. doi: 10.1002/prot.24331. Epub 2013 Aug 19.
Estrogen receptor alpha (ERα) is a hormone-responsive transcription factor that contains several discrete functional domains, including a ligand-binding domain (LBD) and a DNA-binding domain (DBD). Despite a wealth of knowledge about the behaviors of individual domains, the molecular mechanisms of cross-talk between LBD and DBD during signal transduction from hormone to DNA-binding of ERα remain elusive. Here, we apply a multiscale approach combining coarse-grained (CG) and atomistically detailed simulations to characterize this cross-talk mechanism via an investigation of the ERα conformational landscape. First, a CG model of ERα is built based on crystal structures of individual LBDs and DBDs, with more emphasis on their interdomain interactions. Second, molecular dynamics simulations are implemented and enhanced sampling is achieved via the "push-pull-release" strategy in the search for different LBD-DBD orientations. Third, multiple energetically stable ERα conformations are identified on the landscape. A key finding is that estradiol-bound LBDs utilize the well-described activation helix H12 to pack and stabilize LBD-DBD interactions. Our results suggest that the estradiol-bound LBDs can serve as a scaffold to position and stabilize the DBD-DNA complex, consistent with experimental observations of enhanced DNA binding with the LBD. Final assessment using atomic-level simulations shows that these CG-predicted models are significantly stable within a 15-ns simulation window and that specific pairs of lysine residues in close proximity at the domain interfaces could serve as candidate sites for chemical cross-linking studies. Together, these simulation results provide a molecular view of the role of ERα domain interactions in response to hormone binding.
雌激素受体 alpha(ERα)是一种激素反应转录因子,包含几个离散的功能域,包括配体结合域(LBD)和 DNA 结合域(DBD)。尽管对各个域的行为有了丰富的了解,但 ERα 激素结合到 DNA 结合的信号转导过程中 LBD 和 DBD 之间的串扰分子机制仍然难以捉摸。在这里,我们应用多尺度方法,结合粗粒化(CG)和原子细节模拟,通过研究 ERα 构象景观来表征这种串扰机制。首先,基于单个 LBD 和 DBD 的晶体结构构建 ERα 的 CG 模型,更注重它们的域间相互作用。其次,实施分子动力学模拟,并通过“推-拉-释放”策略实现增强采样,以寻找不同的 LBD-DBD 取向。第三,在景观上确定多个能量稳定的 ERα 构象。一个关键发现是,结合了雌二醇的 LBD 利用已描述的激活螺旋 H12 来包装和稳定 LBD-DBD 相互作用。我们的结果表明,结合了雌二醇的 LBD 可以作为一个支架来定位和稳定 DBD-DNA 复合物,这与 LBD 增强 DNA 结合的实验观察结果一致。使用原子级模拟的最终评估表明,这些 CG 预测的模型在 15 纳秒的模拟窗口内非常稳定,并且在域界面附近紧密接近的特定赖氨酸残基可以作为化学交联研究的候选位点。总之,这些模拟结果提供了 ERα 域相互作用在激素结合反应中的分子视角。