Carpenter Timothy, Bond Peter J, Khalid Syma, Sansom Mark S P
Department of Biochemistry, University of Oxford, Oxford, United Kingdom.
Biophys J. 2008 Oct;95(8):3790-801. doi: 10.1529/biophysj.108.131078. Epub 2008 Jul 11.
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle of alpha-helices and provides a model system for computational approaches to self-assembly of membrane proteins. Coarse-grained molecular dynamics (CG-MD) simulations have been used to explore partitioning into a membrane of M2 TM helices during bilayer self-assembly from lipids. CG-MD is also used to explore tetramerization of preinserted M2 TM helices. The M2 helix monomer adopts a membrane spanning orientation in a lipid (DPPC) bilayer. Multiple extended CG-MD simulations (5 x 5 micros) were used to study the tetramerization of inserted M2 helices. The resultant tetramers were evaluated in terms of the most populated conformations and the dynamics of their interconversion. This analysis reveals that the M2 tetramer has 2x rotationally symmetrical packing of the helices. The helices form a left-handed bundle, with a helix tilt angle of approximately 16 degrees. The M2 helix bundle generated by CG-MD was converted to an atomistic model. Simulations of this model reveal that the bundle's stability depends on the assumed protonation state of the H37 side chains. These simulations alongside comparison with recent x-ray (3BKD) and NMR (2RLF) structures of the M2 bundle suggest that the model yielded by CG-MD may correspond to a closed state of the channel.
甲型流感病毒M2通道蛋白的跨膜(TM)结构域是由α-螺旋组成的同源四聚体束,为膜蛋白自组装的计算方法提供了一个模型系统。粗粒度分子动力学(CG-MD)模拟已被用于探索在脂质双层自组装过程中M2 TM螺旋向膜中的分配。CG-MD还用于探索预先插入的M2 TM螺旋的四聚化。M2螺旋单体在脂质(二棕榈酰磷脂酰胆碱,DPPC)双层中采取跨膜取向。使用多个扩展的CG-MD模拟(5×5微秒)来研究插入的M2螺旋的四聚化。根据最丰富的构象及其相互转化的动力学对所得的四聚体进行评估。该分析表明,M2四聚体具有螺旋的2倍旋转对称堆积。这些螺旋形成一个左手束,螺旋倾斜角约为16度。由CG-MD生成的M2螺旋束被转换为原子模型。对该模型的模拟表明,束的稳定性取决于H37侧链假定的质子化状态。这些模拟以及与M2束最近的X射线(3BKD)和核磁共振(2RLF)结构的比较表明,CG-MD产生的模型可能对应于通道的关闭状态。