...
首页> 外文期刊>PLoS Computational Biology >The HAMP Signal Relay Domain Adopts Multiple Conformational States through Collective Piston and Tilt Motions
【24h】

The HAMP Signal Relay Domain Adopts Multiple Conformational States through Collective Piston and Tilt Motions

机译:HAMP信号中继域通过集体活塞和倾斜运动采用多种构象状态

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The HAMP domain is a linker region in prokaryotic sensor proteins and relays input signals to the transmitter domain and vice versa. Functional as a dimer, the structure of HAMP shows a parallel coiled-coil motif comprising four helices. To date, it is unclear how HAMP can relay signals from one domain to another, although several models exist. In this work, we use molecular simulation to test the hypothesis that HAMP adopts different conformations, one of which represents an active, signal-relaying configuration, and another an inactive, resting state. We first performed molecular dynamics simulation on the prototype HAMP domain Af1503 from Archaeoglobus fulgidus. We explored its conformational space by taking the structure of the A291F mutant disabling HAMP activity as a starting point. These simulations revealed additional conformational states that differ in the tilt angles between the helices as well as the relative piston shifts of the helices relative to each other. By enhancing the sampling in a metadynamics set up, we investigated three mechanistic models for HAMP signal transduction. Our results indicate that HAMP can access additional conformational states characterized by piston motion. Furthermore, the piston motion of the N-terminal helix of one monomer is directly correlated with the opposite piston motion of the C-terminal helix of the other monomer. The change in piston motion is accompanied by a change in tilt angle between the monomers, thus revealing that HAMP exhibits a collective motion, i.e. a combination of changes in tilt angles and a piston-like displacement. Our results provide insights into the conformational changes that underlie the signaling mechanism involving HAMP.
机译:HAMP域是原核传感器蛋白中的连接子区域,可将输入信号中继到发射器域,反之亦然。作为一种二聚体,HAMP的结构显示出包含四个螺旋的平行卷曲螺旋基序。迄今为止,尽管存在几种模型,但尚不清楚HAMP如何将信号从一个域中继到另一个域。在这项工作中,我们使用分子模拟来检验HAMP采用不同构象的假设,其中一种代表活跃的信号中继构型,而另一种代表静止的静止态。我们首先对来自古细菌的原型HAMP域Af1503进行了分子动力学模拟。我们以禁用HAMP活性的A291F突变体的结构为起点,探索了其构象空间。这些模拟揭示了额外的构象状态,这些构象状态在螺旋之间的倾斜角度以及螺旋相对彼此的相对活塞位移方面不同。通过增强元动力学设置中的采样,我们研究了HAMP信号转导的三种机理模型。我们的结果表明,HAMP可以访问以活塞运动为特征的其他构象状态。此外,一种单体的N-末端螺旋的活塞运动与另一单体的C-末端螺旋的相反的活塞运动直接相关。活塞运动的变化伴随着单体之间的倾斜角的变化,因此表明HAMP表现出集体运动,即,倾斜角的变化和活塞状位移的组合。我们的结果提供了有关构象变化的见解,而构象变化是涉及HAMP的信号传导机制的基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号