The cytoskeleton dynamics-dependent LINC complex in periodontal ligament stem cells transmits mechanical stress to the nuclear envelope and promotes YAP nuclear translocation.

IF 7.1 2区 医学 Q1 CELL & TISSUE ENGINEERING Stem Cell Research & Therapy Pub Date : 2024-09-06 DOI:10.1186/s13287-024-03884-0
Xuehuan Meng, Ye Zhu, Hao Tan, Baraa Daraqel, Ye Ming, Xiang Li, Guoyin Yang, Xinyi He, Jinlin Song, Leilei Zheng
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Abstract

Background: Periodontal ligament stem cells (PDLSCs) are important seed cells in tissue engineering and clinical applications. They are the priority receptor cells for sensing various mechanical stresses. Yes-associated protein (YAP) is a recognized mechanically sensitive transcription factor. However, the role of YAP in regulating the fate of PDLSCs under tension stress (TS) and its underlying mechanism is still unclear.

Methods: The effects of TS on the morphology and fate of PDLSCs were investigated using fluorescence staining, transmission electron microscopy, flow cytometry and quantitative real-time polymerase chain reaction (qRT-PCR). Then qRT-PCR, western blotting, immunofluorescence staining and gene knockdown experiments were performed to investigate the expression and distribution of YAP and its correlation with PDLSCs proliferation. The effects of cytoskeleton dynamics on YAP nuclear translocation were subsequently explored by adding cytoskeleton inhibitors. The effect of cytoskeleton dynamics on the expression of the LINC complex was proved through qRT-PCR and western blotting. After destroying the LINC complex by adenovirus, the effects of the LINC complex on YAP nuclear translocation and PDLSCs proliferation were investigated. Mitochondria-related detections were then performed to explore the role of mitochondria in YAP nuclear translocation. Finally, the in vitro results were verified by constructing orthodontic tooth movement models in Sprague-Dawley rats.

Results: TS enhanced the polymerization and stretching of F-actin, which upregulated the expression of the LINC complex. This further strengthened the pull on the nuclear envelope, enlarged the nuclear pore, and facilitated YAP's nuclear entry, thus enhancing the expression of proliferation-related genes. In this process, mitochondria were transported to the periphery of the nucleus along the reconstructed microtubules. They generated ATP to aid YAP's nuclear translocation and drove F-actin polymerization to a certain degree. When the LINC complex was destroyed, the nuclear translocation of YAP was inhibited, which limited PDLSCs proliferation, impeded periodontal tissue remodeling, and hindered tooth movement.

Conclusions: Our study confirmed that appropriate TS could promote PDLSCs proliferation and periodontal tissue remodeling through the mechanically driven F-actin/LINC complex/YAP axis, which could provide theoretical guidance for seed cell expansion and for promoting healthy and effective tooth movement in clinical practice.

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牙周韧带干细胞中依赖细胞骨架动力学的 LINC 复合物将机械应力传递到核膜,并促进 YAP 核转位。
背景:牙周韧带干细胞(PDLSCs)是组织工程和临床应用中重要的种子细胞。它们是感知各种机械应力的优先受体细胞。YAP是一种公认的机械敏感转录因子。然而,YAP在张应力(TS)下调控PDLSCs命运的作用及其内在机制仍不清楚:方法:利用荧光染色、透射电子显微镜、流式细胞术和实时定量聚合酶链反应(qRT-PCR)研究了TS对PDLSCs形态和命运的影响。然后进行了qRT-PCR、Western印迹、免疫荧光染色和基因敲除实验,以研究YAP的表达和分布及其与PDLSCs增殖的相关性。随后,通过添加细胞骨架抑制剂探讨了细胞骨架动力学对YAP核转位的影响。细胞骨架动力学对LINC复合物表达的影响通过qRT-PCR和Western印迹得到证实。通过腺病毒破坏LINC复合物后,研究了LINC复合物对YAP核转位和PDLSCs增殖的影响。然后进行线粒体相关检测,以探讨线粒体在 YAP 核转位中的作用。最后,通过在 Sprague-Dawley 大鼠中构建牙齿矫正运动模型来验证体外结果:TS增强了F-肌动蛋白的聚合和伸展,从而上调了LINC复合物的表达。这进一步加强了对核包膜的拉力,扩大了核孔,促进了 YAP 进入核内,从而提高了增殖相关基因的表达。在此过程中,线粒体沿着重建的微管被运送到细胞核外围。它们产生的 ATP 有助于 YAP 的核转运,并在一定程度上推动了 F-肌动蛋白的聚合。当LINC复合物被破坏时,YAP的核转位受到抑制,从而限制了PDLSCs的增殖,阻碍了牙周组织的重塑,妨碍了牙齿的移动:我们的研究证实,适当的 TS 可通过机械驱动的 F-actin/LINC 复合物/YAP 轴促进 PDLSCs 增殖和牙周组织重塑,这为种子细胞扩增和促进临床实践中牙齿的健康有效移动提供了理论指导。
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来源期刊
Stem Cell Research & Therapy
Stem Cell Research & Therapy CELL BIOLOGY-MEDICINE, RESEARCH & EXPERIMENTAL
CiteScore
13.20
自引率
8.00%
发文量
525
审稿时长
1 months
期刊介绍: Stem Cell Research & Therapy serves as a leading platform for translational research in stem cell therapies. This international, peer-reviewed journal publishes high-quality open-access research articles, with a focus on basic, translational, and clinical research in stem cell therapeutics and regenerative therapies. Coverage includes animal models and clinical trials. Additionally, the journal offers reviews, viewpoints, commentaries, and reports.
期刊最新文献
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