Centre for Inflammation Research, Institute for Regeneration and Repair, Edinburgh bioQuarter, The University of Edinburgh, Edinburgh, UK.
Centre for Regenerative Medicine, Institute for Regeneration and Repair, Edinburgh bioQuarter, The University of Edinburgh, Edinburgh, UK.
EMBO J. 2022 Jul 4;41(13):e108719. doi: 10.15252/embj.2021108719. Epub 2022 Jun 15.
Cells need to rapidly and precisely react to multiple mechanical and chemical stimuli in order to ensure precise context-dependent responses. This requires dynamic cellular signalling events that ensure homeostasis and plasticity when needed. A less well-understood process is cellular response to elevated interstitial fluid pressure, where the cell senses and responds to changes in extracellular hydrostatic pressure. Here, using quantitative label-free digital holographic imaging, combined with genome editing, biochemical assays and confocal imaging, we analyse the temporal cellular response to hydrostatic pressure. Upon elevated cyclic hydrostatic pressure, the cell responds by rapid, dramatic and reversible changes in cellular volume. We show that YAP and TAZ, the co-transcriptional regulators of the Hippo signalling pathway, control cell volume and that cells without YAP and TAZ have lower plasma membrane tension. We present direct evidence that YAP/TAZ drive the cellular response to hydrostatic pressure, a process that is at least partly mediated via clathrin-dependent endocytosis. Additionally, upon elevated oscillating hydrostatic pressure, YAP/TAZ are activated and induce TEAD-mediated transcription and expression of cellular components involved in dynamic regulation of cell volume and extracellular matrix. This cellular response confers a feedback loop that allows the cell to robustly respond to changes in interstitial fluid pressure.
细胞需要快速而精确地对多种机械和化学刺激做出反应,以确保精确的上下文相关反应。这需要动态的细胞信号事件,以在需要时确保体内平衡和可塑性。一个不太为人所知的过程是细胞对升高的细胞间质液压力的反应,细胞通过感知和响应细胞外静水压力的变化来做出反应。在这里,我们使用定量无标记数字全息成像技术,结合基因组编辑、生化测定和共聚焦成像,分析了细胞对静水压力的时间响应。在周期性升高的静水压力下,细胞通过快速、剧烈和可逆的细胞体积变化做出反应。我们表明,Hippo 信号通路的共转录调节因子 YAP 和 TAZ 控制细胞体积,并且没有 YAP 和 TAZ 的细胞具有较低的质膜张力。我们提供了直接证据表明,YAP/TAZ 驱动细胞对静水压力的反应,这个过程至少部分是通过网格蛋白依赖性内吞作用介导的。此外,在升高的振荡静水压力下,YAP/TAZ 被激活,并诱导 TEAD 介导的转录和表达参与细胞体积和细胞外基质动态调节的细胞成分。这种细胞反应赋予了一个反馈回路,使细胞能够对细胞间质液压力的变化做出稳健的反应。