Visualizing PIEZO1 Localization and Activity in hiPSC-Derived Single Cells and Organoids with HaloTag Technology

使用 HaloTag 技术可视化 hiPSC 衍生的单细胞和类器官中的 PIEZO1 定位和活性

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作者:Gabriella A Bertaccini, Ignasi Casanellas, Elizabeth L Evans, Jamison L Nourse, George D Dickinson, Gaoxiang Liu, Sayan Seal, Alan T Ly, Jesse R Holt, Tharaka D Wijerathne, Shijun Yan, Elliot E Hui, Jerome J Lacroix, Mitradas M Panicker, Srigokul Upadhyayula, Ian Parker, Medha M Pathak

Abstract

PIEZO1 is critical to numerous physiological processes, transducing diverse mechanical stimuli into electrical and chemical signals. Recent studies underscore the importance of visualizing endogenous PIEZO1 activity and localization to understand its functional roles. To enable physiologically and clinically relevant studies on human PIEZO1, we genetically engineered human induced pluripotent stem cells (hiPSCs) to express a HaloTag fused to endogenous PIEZO1. Combined with advanced imaging, our chemogenetic platform allows precise visualization of PIEZO1 localization dynamics in various cell types. Furthermore, the PIEZO1-HaloTag hiPSC technology facilitates the non-invasive monitoring of channel activity across diverse cell types using Ca2+-sensitive HaloTag ligands, achieving temporal resolution approaching that of patch clamp electrophysiology. Finally, we used lightsheet imaging of hiPSC-derived neural organoids to achieve molecular scale imaging of PIEZO1 in three-dimensional tissue organoids. Our advances offer a novel platform for studying PIEZO1 mechanotransduction in human cells and tissues, with potential for elucidating disease mechanisms and targeted therapeutic development.

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