Matrix stiffening is a prominent feature of pulmonary fibrosis. In this study, we demonstrate that matrix stiffness regulates the ability of fibrotic lung myofibroblasts to invade the basement membrane (BM). We identify α6-integrin as a mechanosensing integrin subunit that mediates matrix stiffness-regulated myofibroblast invasion. Increasing α6-expression, specifically the B isoform (α6B), couples β1-integrin to mediate MMP-2-dependent pericellular proteolysis of BM collagen IV, leading to myofibroblast invasion. Human idiopathic pulmonary fibrosis lung myofibroblasts express high levels of α6-integrin in vitro and in vivo. Genetic ablation of α6 in collagen-expressing mesenchymal cells or pharmacological blockade of matrix stiffness-regulated α6-expression protects mice against bleomycin injury-induced experimental lung fibrosis. These findings suggest that α6-integrin is a matrix stiffness-regulated mechanosensitive molecule which confers an invasive fibroblast phenotype and mediates experimental lung fibrosis. Targeting this mechanosensing α6(β1)-integrin offers a novel anti-fibrotic strategy against lung fibrosis.
Mechanosensing by the α6-integrin confers an invasive fibroblast phenotype and mediates lung fibrosis.
α6整合素的机械感知赋予成纤维细胞侵袭性表型,并介导肺纤维化
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作者:Chen Huaping, Qu Jing, Huang Xiangwei, Kurundkar Ashish, Zhu Lanyan, Yang Naiheng, Venado Aida, Ding Qiang, Liu Gang, Antony Veena B, Thannickal Victor J, Zhou Yong
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2016 | 起止号: | 2016 Aug 18; 7:12564 |
| doi: | 10.1038/ncomms12564 | 研究方向: | 细胞生物学 |
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