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基质力学通过控制细胞铺展来控制 YAP 的磷酸化从而影响脂肪生成。

Substrate mechanics controls adipogenesis through YAP phosphorylation by dictating cell spreading.

机构信息

International Clinical Research Center (FNUSA-ICRC), St. Anne's University Hospital, Brno, Czech Republic; Competence Center for Mechanobiology in Regenerative Medicine, INTERREG ATCZ133, Brno, Czech Republic.

International Clinical Research Center (FNUSA-ICRC), St. Anne's University Hospital, Brno, Czech Republic.

出版信息

Biomaterials. 2019 Jun;205:64-80. doi: 10.1016/j.biomaterials.2019.03.009. Epub 2019 Mar 16.

Abstract

The mechanoregulated proteins YAP/TAZ are involved in the adipogenic/osteogenic switch of mesenchymal stem cells (MSCs). MSC fate decision can be unbalanced by controlling substrate mechanics, in turn altering the transmission of tension through cell cytoskeleton. MSCs have been proposed for orthopedic and reconstructive surgery applications. Thus, a tight control of their adipogenic potential is required in order to avoid their drifting towards fat tissue. Substrate mechanics has been shown to drive MSC commitment and to regulate YAP/TAZ protein shuttling and turnover. The mechanism by which YAP/TAZ co-transcriptional activity is mechanically regulated during MSC fate acquisition is still debated. Here, we design few bioengineering tools suited to disentangle the contribution of mechanical from biological stimuli to MSC adipogenesis. We demonstrate that the mechanical repression of YAP happens through its phosphorylation, is purely mediated by cell spreading downstream of substrate mechanics as dictated by dimensionality. YAP repression is sufficient to prompt MSC adipogenesis, regardless of a permissive biological environment, TEAD nuclear presence or focal adhesion stabilization. Finally, by harnessing the potential of YAP mechanical regulation, we propose a practical example of the exploitation of adipogenic transdifferentiation in tumors.

摘要

机械调节蛋白 YAP/TAZ 参与间充质干细胞(MSCs)的成脂/成骨转换。通过控制基质力学,改变细胞细胞骨架张力的传递,可以使 MSC 命运决定失去平衡。MSCs 已被提议用于矫形和重建外科手术。因此,为了避免它们向脂肪组织漂移,需要严格控制它们的成脂潜能。已经表明,基质力学驱动 MSC 分化,并调节 YAP/TAZ 蛋白穿梭和周转。在 MSC 命运获得过程中,YAP/TAZ 共转录活性如何受到机械调节的机制仍存在争议。在这里,我们设计了一些生物工程工具,适合于将机械刺激与生物刺激区分开来,以研究其对 MSC 成脂分化的影响。我们证明 YAP 的机械抑制是通过其磷酸化发生的,并且完全是由基质力学决定的细胞铺展所介导的,而与维度无关。YAP 的抑制足以促使 MSC 成脂分化,而与允许的生物环境、TEAD 核存在或粘着斑稳定无关。最后,通过利用 YAP 机械调节的潜力,我们提出了在肿瘤中利用成脂转分化的一个实际例子。

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