Department of Basic Medical Sciences, College of Osteopathic Medicine of the Pacific, Western University of Health Sciences , Pomona, CA, USA.
J Gen Physiol. 2023 May 1;155(5). doi: 10.1085/jgp.202213260. Epub 2023 Jan 30.
Mechanosensitive PIEZO1 ion channels open in response to membrane stretch. Yet, the underlying microscopic mechanism of this activation remains unknown. To probe this mechanism, we used cell-attached pressure-clamp recordings to measure single channel currents at different steady-state negative pipette pressures, spanning the full range of the channel's pressure sensitivity. Pressure-dependent activation occurs through a sharp reduction of the mean shut duration and through a moderate increase of the mean open duration. Across all tested pressures, the distribution of open and shut dwell times best follows sums of two and three exponential components, respectively. As the magnitude of the pressure stimulus increases, the time constants of most of these exponential components gradually change, in opposite directions for open and shut dwell times, and to a similar extent. In addition, while the relative amplitudes of fast and slow components remain unchanged for open intervals, they fully reverse for shut intervals, further reducing the mean shut duration. Using two-dimensional dwell time analysis, Markov-chain modeling, and simulations, we identified a minimal five-states model which recapitulates essential characteristics of single channel data, including microscopic reversibility, correlations between adjacent open and shut intervals, and asymmetric modulation of dwell times by pressure. This study identifies a microscopic mechanism for the activation of PIEZO1 channels by pressure-induced membrane stretch and deepens our fundamental understanding of mechanotransduction by a vertebrate member of the PIEZO channel family.
机械敏感的 PIEZO1 离子通道在膜拉伸时开放。然而,这种激活的潜在微观机制仍然未知。为了探究这种机制,我们使用细胞贴附式压力钳记录,在不同的稳态负管电压下测量单通道电流,涵盖通道压力敏感性的整个范围。压力依赖性的激活是通过平均关闭持续时间的急剧减少和平均开放持续时间的适度增加来实现的。在所有测试的压力下,开放和关闭停留时间的分布最好分别遵循两个和三个指数分量的总和。随着压力刺激的幅度增加,这些指数分量中的大多数时间常数逐渐变化,对于开放和关闭停留时间,方向相反,程度相似。此外,虽然对于开放间隔,快和慢分量的相对幅度保持不变,但对于关闭间隔,它们完全反转,进一步缩短了平均关闭持续时间。通过二维停留时间分析、马尔可夫链建模和模拟,我们确定了一个最小的五状态模型,该模型再现了单通道数据的基本特征,包括微观可逆性、相邻开放和关闭间隔之间的相关性,以及压力对停留时间的不对称调制。这项研究确定了 PIEZO1 通道由压力诱导的膜拉伸激活的微观机制,并加深了我们对脊椎动物 PIEZO 通道家族成员机械转导的基本理解。