Atcha Hamza, Kulkarni Daanish, Meli Vijaykumar S, Veerasubramanian Praveen Krishna, Wang Yuchun, Cahalan Michael D, Pathak Medha M, Liu Wendy F
Department of Bioengineering, University of California, San Diego, La Jolla 92093, USA.
Sanford Consortium for Regenerative Medicine, La Jolla 92037, USA.
PNAS Nexus. 2024 Oct 4;3(11):pgae436. doi: 10.1093/pnasnexus/pgae436. eCollection 2024 Nov.
Macrophages in the vascular wall ingest and clear lipids, but abundant lipid accumulation leads to foam cell formation and atherosclerosis, a pathological condition often characterized by tissue stiffening. While the role of biochemical stimuli in the modulation of macrophage function is well studied, the role of biophysical cues and the molecules involved in mechanosensation are less well understood. Here, we use genetic and pharmacological tools to show extracellular oxidized low-density lipoproteins (oxLDLs) stimulate Ca signaling through activation of the mechanically gated ion channel Piezo1. Moreover, macrophage Piezo1 expression is critical in the transduction of environmental stiffness and channel deletion suppresses, whereas a gain-of-function mutation exacerbates oxLDL uptake. Additionally, we find that depletion of myeloid Piezo1 protects from atherosclerotic plaque formation in vivo. Together, our study highlights an important role for Piezo1 and its respective mutations in macrophage mechanosensing, lipid uptake, and cardiovascular disease.
血管壁中的巨噬细胞摄取并清除脂质,但大量脂质积累会导致泡沫细胞形成和动脉粥样硬化,这是一种通常以组织硬化为特征的病理状况。虽然生化刺激在调节巨噬细胞功能中的作用已得到充分研究,但生物物理线索以及参与机械传感的分子的作用却鲜为人知。在这里,我们使用基因和药理学工具表明,细胞外氧化型低密度脂蛋白(oxLDL)通过激活机械门控离子通道Piezo1来刺激钙信号传导。此外,巨噬细胞Piezo1的表达在环境硬度的转导中至关重要,通道缺失会抑制oxLDL摄取,而功能获得性突变则会加剧oxLDL摄取。此外,我们发现骨髓Piezo1的缺失可在体内预防动脉粥样硬化斑块的形成。总之,我们的研究突出了Piezo1及其各自的突变在巨噬细胞机械传感、脂质摄取和心血管疾病中的重要作用。