Center for Quantitative Biology, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, China.
Peking-Tsinghua Center for Life Sciences, Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, China.
Elife. 2021 Jun 8;10:e58388. doi: 10.7554/eLife.58388.
NompC is a mechanosensitive ion channel responsible for the sensation of touch and balance in . Based on a resolved cryo-EM structure, we performed all-atom molecular dynamics simulations and electrophysiological experiments to study the atomistic details of NompC gating. Our results showed that NompC could be opened by compression of the intracellular ankyrin repeat domain but not by a stretch, and a number of hydrogen bonds along the force convey pathway are important for the mechanosensitivity. Under intracellular compression, the bundled ankyrin repeat region acts like a spring with a spring constant of ~13 pN nm by transferring forces at a rate of ~1.8 nm ps. The linker helix region acts as a bridge between the ankyrin repeats and the transient receptor potential (TRP) domain, which passes on the pushing force to the TRP domain to undergo a clockwise rotation, resulting in the opening of the channel. This could be the universal gating mechanism of similar tethered mechanosensitive TRP channels, which enable cells to feel compression and shrinkage.
NompC 是一种机械敏感离子通道,负责触觉和平衡感。基于已解析的冷冻电镜结构,我们进行了全原子分子动力学模拟和电生理实验,以研究 NompC 门控的原子细节。我们的结果表明,NompC 可以通过细胞内锚重复结构域的压缩而不是拉伸来打开,并且沿力传递途径的一些氢键对于机械敏感性很重要。在细胞内压缩下,成束的锚重复区域充当具有约 13 pNnm 的弹簧常数的弹簧,通过以约 1.8nmps 的速率传递力。连接螺旋区域充当锚重复结构域和瞬时受体电位 (TRP) 结构域之间的桥梁,将推动的力传递到 TRP 结构域,使其进行顺时针旋转,从而打开通道。这可能是类似的拴系机械敏感 TRP 通道的通用门控机制,使细胞能够感知压缩和收缩。