张力通过α-连环蛋白/肌动蛋白骨架/Hippo 通路调节终板软骨细胞的软骨表型表达。

Tension regulates the cartilage phenotypic expression of endplate chondrocytes through the α-catenin/actin skeleton/Hippo pathway.

机构信息

Department of Orthopedics, Yijishan Hospital, The First Affiliated Hospital of Wannan Medical College, Wuhu, China.

Department of Spine Surgery, Yijishan Hospital, The First Affiliated Hospital of Wannan Medical College, Wuhu, China.

出版信息

J Cell Mol Med. 2024 Feb;28(4):e18133. doi: 10.1111/jcmm.18133.

Abstract

The study aimed to investigate the regulatory mechanism of intracellular tension signaling in endplate chondrocytes and its impact on extracellular matrix synthesis. Human endplate chondrocytes were subjected to tension load using Flexcell FX-5000™, and changes in phenotype, morphology, and the expression of Hippo signaling pathway and α-Catenin were assessed through various techniques. Through the overexpression of YAP and inhibition of α-Catenin, the study clarified the intracellular tension signaling pathway and its regulation of extracellular matrix synthesis in endplate cartilage. In vitro-cultured human endplate chondrocytes significantly suppressed phenotype-related genes and proteins, accompanied by distinct changes in cytoskeleton morphology. Tension activation resulted in the substantial activation of the Hippo pathway, increased phosphorylation of YAP, and reduced nuclear translocation of YAP. YAP overexpression alleviated the inhibitory effect of tension on extracellular matrix synthesis in endplate chondrocytes. Tension also upregulated the expression of α-Catenin in endplate chondrocytes, which was attenuated by inhibiting α-Catenin expression, thereby reducing the impact of tension on cytoskeletal morphology and YAP nuclear translocation. Taken together, the α-Catenin/actin skeleton/Hippo-coupled network is a crucial signaling pathway for tension signaling in endplate chondrocytes, providing potential therapeutic targets for the treatment of endplate cartilage degeneration.

摘要

本研究旨在探讨细胞内张力信号在终板软骨细胞中的调控机制及其对细胞外基质合成的影响。使用 Flexcell FX-5000™ 对人终板软骨细胞施加张力负荷,通过各种技术评估表型、形态以及 Hippo 信号通路和 α-Catenin 的表达变化。通过过表达 YAP 和抑制 α-Catenin,阐明了细胞内张力信号通路及其对终板软骨细胞细胞外基质合成的调节作用。体外培养的人终板软骨细胞显著抑制与表型相关的基因和蛋白,同时细胞骨架形态发生明显变化。张力激活导致 Hippo 通路的显著激活,YAP 的磷酸化增加,YAP 的核转位减少。YAP 的过表达缓解了张力对终板软骨细胞细胞外基质合成的抑制作用。张力还上调了终板软骨细胞中 α-Catenin 的表达,抑制 α-Catenin 的表达可减弱张力对细胞骨架形态和 YAP 核转位的影响。综上所述,α-Catenin/肌动蛋白骨架/Hippo 偶联网络是终板软骨细胞中张力信号的关键信号通路,为终板软骨退变的治疗提供了潜在的治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/588a/10853574/0f3365f7a38c/JCMM-28-e18133-g001.jpg

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