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Structural Investigation of MscL Gating Using Experimental Data and Coarse Grained MD Simulations

机译:利用实验数据和粗粒MD模拟对MscL门进行结构研究

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摘要

The mechanosensitive channel of large conductance (MscL) has become a model system in which to understand mechanosensation, a process involved in osmoregulation and many other physiological functions. While a high resolution closed state structure is available, details of the open structure and the gating mechanism remain unknown. In this study we combine coarse grained simulations with restraints from EPR and FRET experiments to study the structural changes involved in gating with much greater level of conformational sampling than has previously been possible. We generated a set of plausible open pore structures that agree well with existing open pore structures and gating models. Most interestingly, we found that membrane thinning induces a kink in the upper part of TM1 that causes an outward motion of the periplasmic loop away from the pore centre. This previously unobserved structural change might present a new mechanism of tension sensing and might be related to a functional role in osmoregulation.
机译:大电导的机械敏感通道(MscL)已成为一个模型系统,可在其中了解机械感觉,渗透压调节和许多其他生理功能所涉及的过程。尽管可以使用高分辨率的闭合状态结构,但打开结构和门控机制的细节仍然未知。在这项研究中,我们将粗粒模拟与EPR和FRET实验的约束相结合,以比以前可能更高的构象采样水平研究与门控有关的结构变化。我们生成了一组合理的开放孔结构,这些结构与现有的开放孔结构和浇口模型非常吻合。最有趣的是,我们发现膜变薄会在TM1的上部引起扭结,从而导致周质环从孔中心向外运动。以前无法观察到的这种结构变化可能代表了一种新的张力传感机制,并且可能与渗透调节作用有关。

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