Institut de Biologie Structurale Jean-Pierre Ebel, Université Joseph Fourier - Grenoble 1, Grenoble, France.
PLoS One. 2013 Jul 2;8(7):e66917. doi: 10.1371/journal.pone.0066917. Print 2013.
HAMP domain is a ubiquitous module of bacterial and archaeal two-component signaling systems. Considerable progress has been made recently in studies of its structure and conformational changes. However, the mechanism of signal transduction through the HAMP domain is not clear. It remains a question whether all the HAMPs have the same mechanism of action and what are the differences between the domains from different protein families. Here, we present the results of unbiased molecular dynamics simulations of the HAMP domain from the archaeal phototaxis signal transducer NpHtrII. Two distinct conformational states of the HAMP domain are observed, that differ in relative position of the helices AS1 and AS2. The longitudinal shift is roughly equal to a half of an α-helix turn, although sometimes it reaches one full turn. The states are closely related to the position of bulky hydrophobic aminoacids at the HAMP domain core. The observed features are in good agreement with recent experimental results and allow us to propose that the states detected in the simulations are the resting state and the signaling state of the NpHtrII HAMP domain. To the best of our knowledge, this is the first observation of the same HAMP domain in different conformations. The simulations also underline the difference between AMBER ff99-SB-ILDN and CHARMM22-CMAP forcefields, as the former favors the resting state and the latter favors the signaling state.
HAMP 结构域是细菌和古菌双组分信号系统中普遍存在的模块。最近,人们在该结构域的结构和构象变化方面取得了相当大的进展。然而,通过 HAMP 结构域进行信号转导的机制尚不清楚。所有 HAMPs 是否具有相同的作用机制,以及来自不同蛋白质家族的结构域之间有何区别,这些问题仍未得到解答。在这里,我们呈现了对古菌光趋性信号转导蛋白 NpHtrII 的 HAMP 结构域进行无偏分子动力学模拟的结果。观察到 HAMP 结构域存在两种截然不同的构象状态,它们在 AS1 和 AS2 螺旋相对位置上存在差异。纵向位移大致等于半个α-螺旋转角,尽管有时会达到一个完整的转角。这些状态与 HAMP 结构域核心中体积较大的疏水性氨基酸的位置密切相关。观察到的特征与最近的实验结果非常吻合,使我们能够提出在模拟中检测到的状态是 NpHtrII HAMP 结构域的静止状态和信号状态。据我们所知,这是首次观察到同一 HAMP 结构域处于不同构象。模拟还强调了 AMBER ff99-SB-ILDN 和 CHARMM22-CMAP 力场之间的差异,因为前者有利于静止状态,后者有利于信号状态。