Sorbonne Université, Ecole Normale Supérieure, PSL University, CNRS, Laboratoire des Biomolécules, 4 place Jussieu, F-75005 Paris, France.
Sorbonne Université, Ecole Normale Supérieure, PSL University, CNRS, Laboratoire des Biomolécules, 4 place Jussieu, F-75005 Paris, France.
Biochim Biophys Acta Biomembr. 2022 Nov 1;1864(11):184030. doi: 10.1016/j.bbamem.2022.184030. Epub 2022 Aug 18.
Homeoprotein transcription factors have the property of interacting with membranes through their DNA-binding homeodomain, which is involved in unconventional internalization and secretion. Both processes depend on membrane-translocating events but their detailed molecular mechanisms are still poorly understood. We have previously characterized the conformational properties of Engrailed 2 homeodomain (EnHD) in aqueous solution and in micelles as membrane-mimetic environments. In the present study, we used small isotropic lipid bicelles as a more relevant membrane-mimetic model to characterize the membrane-bound state of EnHD. We show that lipid bicelles, in contrast to micelles, adequately reproduce the requirement of anionic lipids in the membrane binding and conformational transition of EnHD. The fold-unfold transition of EnHD induced by anionic lipids was characterized by NMR using H, C, N chemical shifts, nuclear Overhauser effects, residual dipolar couplings, intramolecular and intermolecular paramagnetic relaxation enhancements induced by site-directed spin-label or paramagnetic lipid probe, respectively. A global unpacking of EnHD helices is observed leading to a loss of the native fold. However, near-native propensities of EnHD backbone conformation are maintained in membrane environment, including not only the three helices but also the turn connecting helices H2 and H3. NMR and coarse-grained molecular dynamics simulations reveal that the EnHD adopts a shallow insertion in the membrane, with the three helices oriented parallel to the membrane. EnHD explores extended conformations and closed U-shaped conformations, which are stabilized by anionic lipid recruitment.
同源盒转录因子具有通过其 DNA 结合同源结构域与膜相互作用的特性,该结构域参与非常规的内化和分泌。这两个过程都依赖于跨膜事件,但它们的详细分子机制仍知之甚少。我们之前已经在水性溶液中和胶束中(作为模拟膜的环境)对 Engrailed 2 同源结构域(EnHD)的构象特性进行了表征。在本研究中,我们使用小各向同性脂质双分子层作为更相关的模拟膜模型来表征 EnHD 的膜结合状态。我们表明,与胶束相比,脂质双分子层充分再现了阴离子脂质在 EnHD 的膜结合和构象转变中的要求。通过使用 H、C、N 化学位移、核 Overhauser 效应、残差偶极耦合、通过定点自旋标记或顺磁脂质探针分别诱导的分子内和分子间顺磁弛豫增强,用 NMR 对 EnHD 折叠展开的转变进行了表征。观察到 EnHD 螺旋的整体解包,导致天然折叠的丧失。然而,在膜环境中保持了 EnHD 骨架构象的近天然倾向,包括不仅是三个螺旋,还有连接螺旋 H2 和 H3 的环。NMR 和粗粒度分子动力学模拟表明,EnHD 采用浅插入膜的方式,三个螺旋平行于膜排列。EnHD 探索了扩展构象和闭合的 U 形构象,这些构象通过阴离子脂质的募集得到稳定。