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埃兹蛋白调节皮肤成纤维细胞的大小/力学特性以及YAP依赖的增殖。

Ezrin regulates skin fibroblast size/mechanical properties and YAP-dependent proliferation.

作者信息

Quan Chunji, Yan Yan, Qin Zhaoping, Lin Zhenhua, Quan Taihao

机构信息

Department of Pathology, Affiliated Hospital of Yanbian University Medical College, 133000 Yanji, Jilin, Province, People's Republic of China.

Department of Dermatology, Plastic Surgery Hospital, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 100144, China.

出版信息

J Cell Commun Signal. 2018 Sep;12(3):549-560. doi: 10.1007/s12079-017-0406-6. Epub 2017 Sep 9.

Abstract

Ezrin acts as a dynamic linkage between plasma membrane and cytoskeleton, and thus involved in many fundamental cellular functions. Yet, its potential role in human skin is virtually unknown. Here we investigate the role of Ezrin in primary skin fibroblasts, the major cells responsible extracellular matrix (ECM) production. We report that Ezrin play an important role in the maintenance of skin fibroblast size/mechanical properties and proliferation. siRNA-mediated Ezrin knockdown decreased fibroblast size and mechanical properties, and thus impaired the nuclear translocation of YAP, a protein commonly response to cell size and mechanical force. Functionally, depletion of Ezrin significantly inhibited YAP target gene expression and fibroblast proliferation. Conversely, restoration of YAP nuclear translocation by overexpression of constitutively active YAP reversed YAP target genes expression and rescued proliferation in Ezrin knockdown cells. These data reveal a novel role for Ezrin in maintenance of fibroblast size/mechanical force and regulating YAP-mediated proliferation.

摘要

埃兹蛋白作为质膜与细胞骨架之间的动态连接物,因而参与许多基本的细胞功能。然而,其在人体皮肤中的潜在作用实际上尚不清楚。在此,我们研究埃兹蛋白在原代表皮成纤维细胞中的作用,原代表皮成纤维细胞是负责细胞外基质(ECM)产生的主要细胞。我们报告称,埃兹蛋白在维持皮肤成纤维细胞大小/力学特性及增殖方面发挥重要作用。小干扰RNA(siRNA)介导的埃兹蛋白敲低降低了成纤维细胞大小和力学特性,进而损害了Yes相关蛋白(YAP)的核转位,YAP是一种通常对细胞大小和机械力产生反应的蛋白质。在功能上,埃兹蛋白的缺失显著抑制YAP靶基因表达和成纤维细胞增殖。相反,通过组成型活性YAP的过表达恢复YAP核转位,可逆转YAP靶基因表达并挽救埃兹蛋白敲低细胞中的增殖。这些数据揭示了埃兹蛋白在维持成纤维细胞大小/机械力及调节YAP介导的增殖方面的新作用。

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