Louvain Institute of Biomolecular Science and Technology, Université Catholique de Louvain, Louvain-la-Neuve 1348, Belgium.
de Duve Institute, Université Catholique de Louvain, Brussels 1200, Belgium.
Nano Lett. 2021 Jun 23;21(12):4950-4958. doi: 10.1021/acs.nanolett.1c00599. Epub 2021 Jun 14.
PIEZO1 ion channels are activated by mechanical stimuli, triggering intracellular chemical signals. Recent structural studies suggest that plasma membrane tension or local curvature changes modulate PIEZO1 channel gating and activation. However, whether PIEZO1 localization is governed by tension gradients or long-range mechanical perturbations across the cells is still unclear. Here, we probe the nanoscale localization of PIEZO1 on red blood cells (RBCs) at high resolution (∼30 nm), and we report for the first time the existence of submicrometric PIEZO1 clusters in native conditions. Upon interaction with Yoda1, an allosteric modulator, PIEZO1 clusters increase in abundance in regions of higher membrane tension and lower curvature. We further show that PIEZO1 ion channels interact with the spectrin cytoskeleton in both resting and activated states. Our results point toward a strong interplay between plasma membrane tension gradients, curvature, and cytoskeleton association of PIEZO1.
PIEZO1 离子通道被机械刺激激活,引发细胞内化学信号。最近的结构研究表明,质膜张力或局部曲率变化调节 PIEZO1 通道的门控和激活。然而,PIEZO1 的定位是否受张力梯度或细胞间长程机械扰动的控制尚不清楚。在这里,我们以高分辨率(约 30nm)探测 PIEZO1 在红细胞(RBC)上的纳米级定位,并首次报告在天然条件下存在亚微米级的 PIEZO1 簇。在与别构调节剂 Yoda1 相互作用后,PIEZO1 簇在膜张力较高和曲率较低的区域丰度增加。我们进一步表明,PIEZO1 离子通道在静息和激活状态下都与血影蛋白细胞骨架相互作用。我们的结果表明,质膜张力梯度、曲率和 PIEZO1 细胞骨架之间存在强烈的相互作用。