Xu Liran, Li Ting, Cao Yapeng, He Yu, Shao Zehua, Liu Siyu, Wang Bianbian, Su Ailing, Tian Huijing, Li Yongxin, Liang Guozheng, Wang Changhe, Shyy John, Xiong Ying, Chen Fangyuan, Yuan Jason Xj, Liu Junjun, Zhou Bin, Wettschureck Nina, Offermanns Stefan, Yan Yang, Yuan Zuyi, Wang Shengpeng
Department of Cardiac Surgery, the First Affiliated Hospital of Xi'an Jiaotong University, Key Laboratory of Environment and Genes Related to Diseases, Ministry of Education.
Center for Mitochondrial Biology and Medicine, School of Life Science and Technology, and.
J Clin Invest. 2025 Jun 2;135(11). doi: 10.1172/JCI184158.
Idiopathic pulmonary fibrosis (IPF) is a devastating interstitial lung disease characterized by the excessive accumulation of activated myofibroblasts that deposit extracellular matrix (ECM) protein, leading to progressive scar formation and mechanical stress. However, the cellular origin and fate of myofibroblasts remain controversial, and the mechanisms by which myofibroblasts sense mechanical cues in the lung are unclear. Here, we report that periostin (Postn) is a reliable and distinctive marker for pulmonary myofibroblasts, while ablation of Postn+ myofibroblasts after injury ameliorated lung fibrosis. PIEZO1 was highly expressed in Postn+ myofibroblast and played a vital role in mechanoactivation of Postn+ myofibroblast and development of lung fibrosis. Conditional deletion of Piezo1 in Postn+ myofibroblasts significantly inhibited lung fibrosis by suppressing myofibroblast activation and proliferation. Loss of Piezo1 led to disruption of actin organization and prevention of Yap/Taz nuclear localization, thus shifting the myofibroblasts from a proliferative state into a stressed and apoptotic state. Furthermore, myofibroblast-specific Yap/Taz deletion fully recapitulated the protective phenotypes of myofibroblast-Piezo1-KO mice. These findings show that periostin marks pulmonary myofibroblasts, and that PIEZO1-mediated mechanosensation is essential for myofibroblast activation in the lung. Targeting PIEZO1 in the periostin-expressing cells is a novel therapeutic option to interfere with fibrotic diseases such as IPF .
特发性肺纤维化(IPF)是一种毁灭性的间质性肺疾病,其特征是活化的肌成纤维细胞过度积累,这些细胞会沉积细胞外基质(ECM)蛋白,导致进行性瘢痕形成和机械应力。然而,肌成纤维细胞的细胞起源和命运仍存在争议,并且肌成纤维细胞在肺中感知机械信号的机制尚不清楚。在此,我们报告骨膜蛋白(Postn)是肺肌成纤维细胞的可靠且独特的标志物,而损伤后Postn +肌成纤维细胞的消融可改善肺纤维化。PIEZO1在Postn +肌成纤维细胞中高表达,并在Postn +肌成纤维细胞的机械激活和肺纤维化发展中起关键作用。在Postn +肌成纤维细胞中条件性缺失Piezo1可通过抑制肌成纤维细胞的激活和增殖来显著抑制肺纤维化。Piezo1的缺失导致肌动蛋白组织的破坏并阻止Yap/Taz的核定位,从而使肌成纤维细胞从增殖状态转变为应激和凋亡状态。此外,肌成纤维细胞特异性Yap/Taz缺失完全重现了肌成纤维细胞-Piezo1基因敲除小鼠的保护表型。这些发现表明骨膜蛋白标记肺肌成纤维细胞,并且PIEZO1介导的机械感受对于肺中肌成纤维细胞的激活至关重要。在表达骨膜蛋白的细胞中靶向PIEZO1是一种干扰诸如IPF等纤维化疾病的新型治疗选择。