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在循环机械拉伸负荷下,间充质干细胞成骨过程中的YAP机械转导受ROCK调节。

YAP mechanotransduction under cyclic mechanical stretch loading for mesenchymal stem cell osteogenesis is regulated by ROCK.

作者信息

Kim Eunju, Riehl Brandon D, Bouzid Tasneem, Yang Ruiguo, Duan Bin, Donahue Henry J, Lim Jung Yul

机构信息

Department of Mechanical and Materials Engineering, College of Engineering, University of Nebraska-Lincoln, Lincoln, NE, United States.

Department of Internal Medicine, College of Medicine, University of Nebraska Medical Center, Omaha, NE, United States.

出版信息

Front Bioeng Biotechnol. 2024 Jan 11;11:1306002. doi: 10.3389/fbioe.2023.1306002. eCollection 2023.

Abstract

While yes-associated protein (YAP) is now recognized as a potent mechanosensitive transcriptional regulator to affect cell growth and differentiation including the osteogenic transcription of mesenchymal stem cells (MSCs), most studies have reported the YAP mechanosensing of static mechanophysical cues such as substrate stiffness. We tested MSC response to dynamic loading, i.e., cyclic mechanical stretching, and assessed YAP mechanosensing and resultant MSC osteogenesis. We showed that cyclic stretching at 10% strain and 1 Hz frequency triggered YAP nuclear import in MSCs. YAP phosphorylation at S127 and S397, which is required for YAP cytoplasmic retention, was suppressed by cyclic stretch. We also observed that anti-YAP-regulatory Hippo pathway, LATS phosphorylation, was significantly decreased by stretch. We confirmed the stretch induction of MSC osteogenic transcription and differentiation, and this was impaired under YAP siRNA suggesting a key role of YAP dynamic mechanosensing in MSC osteogenesis. As an underlying mechanism, we showed that the YAP nuclear transport by cyclic stretch was abrogated by ROCK inhibitor, Y27632. ROCK inhibitor also impaired the stretch induction of F-actin formation and MSC osteogenesis, thus implicating the role of the ROCK-F-actin cascade in stretch-YAP dynamic mechanosensing-MSC osteogenesis. Our results provide insight into bone tissue engineering and skeletal regenerative capacity of MSCs especially as regards the role of dynamic mechanical loading control of YAP-mediated MSC osteogenic transcription.

摘要

虽然Yes相关蛋白(YAP)现在被认为是一种强大的机械敏感转录调节因子,可影响细胞生长和分化,包括间充质干细胞(MSC)的成骨转录,但大多数研究报告的是YAP对静态机械物理线索(如底物硬度)的机械感知。我们测试了MSC对动态加载(即循环机械拉伸)的反应,并评估了YAP的机械感知以及由此产生的MSC成骨作用。我们发现,在10%应变和1Hz频率下的循环拉伸触发了MSC中YAP的核转运。YAP在S127和S397位点的磷酸化是YAP保留在细胞质中所必需的,而循环拉伸抑制了这种磷酸化。我们还观察到,抗YAP调节的Hippo通路,即大肿瘤抑制激酶(LATS)的磷酸化,在拉伸后显著降低。我们证实了拉伸诱导的MSC成骨转录和分化,而在YAP小干扰RNA(siRNA)作用下这一过程受损,这表明YAP动态机械感知在MSC成骨过程中起关键作用。作为一种潜在机制,我们发现ROCK抑制剂Y27632消除了循环拉伸诱导的YAP核转运。ROCK抑制剂还损害了拉伸诱导的F-肌动蛋白形成和MSC成骨,因此暗示了ROCK-F-肌动蛋白级联在拉伸-YAP动态机械感知-MSC成骨中的作用。我们的研究结果为骨组织工程和MSC的骨骼再生能力提供了见解,特别是关于动态机械加载对YAP介导的MSC成骨转录的控制作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/561c/10809151/d6abe903945e/fbioe-11-1306002-g001.jpg

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