Gur Mert, Zomot Elia, Cheng Mary Hongying, Bahar Ivet
Department of Computational and Systems Biology, School of Medicine, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
J Chem Phys. 2015 Dec 28;143(24):243134. doi: 10.1063/1.4936133.
The bacterial sodium-coupled leucine transporter (LeuT) has been broadly used as a structural model for understanding the structure-dynamics-function of mammalian neurotransmitter transporters as well as other solute carriers that share the same fold (LeuT fold), as the first member of the family crystallographically resolved in multiple states: outward-facing open, outward-facing occluded, and inward-facing open. Yet, a complete picture of the energy landscape of (sub)states visited along the LeuT transport cycle has been elusive. In an attempt to visualize the conformational spectrum of LeuT, we performed extensive simulations of LeuT dimer dynamics in the presence of substrate (Ala or Leu) and co-transported Na(+) ions, in explicit membrane and water. We used both conventional molecular dynamics (MD) simulations (with Anton supercomputing machine) and a recently introduced method, collective MD, that takes advantage of collective modes of motions predicted by the anisotropic network model. Free energy landscapes constructed based on ∼40 μs trajectories reveal multiple substates occluded to the extracellular (EC) and/or intracellular (IC) media, varying in the levels of exposure of LeuT to EC or IC vestibules. The IC-facing transmembrane (TM) helical segment TM1a shows an opening, albeit to a smaller extent and in a slightly different direction than that observed in the inward-facing open crystal structure. The study provides insights into the spectrum of conformational substates and paths accessible to LeuT and highlights the differences between Ala- and Leu-bound substates.
细菌钠偶联亮氨酸转运体(LeuT)已被广泛用作结构模型,以理解哺乳动物神经递质转运体以及其他具有相同折叠结构(LeuT折叠)的溶质载体的结构-动力学-功能,它是该家族中第一个通过晶体学解析出多种状态的成员:外向开放、外向堵塞和内向开放。然而,沿LeuT转运循环所经历的(亚)状态的能量景观全貌仍难以捉摸。为了可视化LeuT的构象谱,我们在存在底物(丙氨酸或亮氨酸)和共转运的Na⁺离子的情况下,在明确的膜和水中对LeuT二聚体动力学进行了广泛模拟。我们使用了传统分子动力学(MD)模拟(借助Anton超级计算机)以及一种最近引入的方法——集体MD,该方法利用了由各向异性网络模型预测的集体运动模式。基于约40 μs轨迹构建的自由能景观揭示了多个对细胞外(EC)和/或细胞内(IC)介质堵塞的亚状态,LeuT对EC或IC前庭的暴露程度各不相同。面向IC的跨膜(TM)螺旋段TM1a显示出一个开口,尽管程度较小且方向与在向内开放晶体结构中观察到的略有不同。该研究为LeuT可及的构象亚状态谱及其路径提供了见解,并突出了丙氨酸结合和亮氨酸结合亚状态之间的差异。