Biomaterials Unit, International Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS), Tsukuba, Japan.
ACS Nano. 2014 Mar 25;8(3):2033-47. doi: 10.1021/nn4058984. Epub 2014 Feb 7.
Stem cell responsiveness to extracellular matrix (ECM) composition and mechanical cues has been the subject of a number of investigations so far, yet the molecular mechanisms underlying stem cell mechano-biology still need full clarification. Here we demonstrate that the paralog proteins YAP and TAZ exert a crucial role in adult cardiac progenitor cell mechano-sensing and fate decision. Cardiac progenitors respond to dynamic modifications in substrate rigidity and nanopattern by promptly changing YAP/TAZ intracellular localization. We identify a novel activity of YAP and TAZ in the regulation of tubulogenesis in 3D environments and highlight a role for YAP/TAZ in cardiac progenitor proliferation and differentiation. Furthermore, we show that YAP/TAZ expression is triggered in the heart cells located at the infarct border zone. Our results suggest a fundamental role for the YAP/TAZ axis in the response of resident progenitor cells to the modifications in microenvironment nanostructure and mechanics, thereby contributing to the maintenance of myocardial homeostasis in the adult heart. These proteins are indicated as potential targets to control cardiac progenitor cell fate by materials design.
迄今为止,干细胞对细胞外基质 (ECM) 组成和机械线索的反应一直是许多研究的主题,但干细胞机械生物学背后的分子机制仍需要充分阐明。在这里,我们证明了 YAP 和 TAZ 这两种平行蛋白在成体心脏祖细胞的机械感知和命运决定中发挥着关键作用。心脏祖细胞通过迅速改变 YAP/TAZ 的细胞内定位,对基质硬度和纳米图案的动态变化做出反应。我们发现 YAP 和 TAZ 在 3D 环境中调节管状形成的新活性,并强调 YAP/TAZ 在心脏祖细胞增殖和分化中的作用。此外,我们还表明,YAP/TAZ 的表达在位于梗塞边界区的心脏细胞中被触发。我们的研究结果表明,YAP/TAZ 轴在驻留祖细胞对微环境纳米结构和力学变化的反应中起着基本作用,从而有助于维持成年心脏中的心肌内稳态。这些蛋白被认为是通过材料设计控制心脏祖细胞命运的潜在靶点。