Department of Human Anatomy and Histoembryology, School of Basic Medical Sciences and Shanghai Jing'an District Central Hospital, Fudan University, Shanghai, China.
Institute of Microsurgery on Extremities, and Department of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine Shanghai, Shanghai, China.
Cell Prolif. 2024 Oct;57(10):e13652. doi: 10.1111/cpr.13652. Epub 2024 May 3.
The Hippo signalling pathway is a conserved kinase cascade that orchestrates diverse cellular processes, such as proliferation, apoptosis, lineage commitment and stemness. With the onset of society ages, research on skeletal aging-mechanics-bone homeostasis has exploded. In recent years, aging and mechanical force in the skeletal system have gained groundbreaking research progress. Under the regulation of mechanics and aging, the Hippo signalling pathway has a crucial role in the development and homeostasis of bone. We synthesize the current knowledge on the role of the Hippo signalling pathway, particularly its downstream effectors yes-associated protein (YAP) and transcriptional co-activator with PDZ-binding motif (TAZ), in bone homeostasis. We discuss the regulation of the lineage specification and function of different skeletal cell types by the Hippo signalling pathway. The interactions of the Hippo signalling pathway with other pathways, such as Wnt, transforming growth factor beta and nuclear factor kappa-B, are also mentioned because of their importance for modulating bone homeostasis. Furthermore, YAP/TAZ have been extensively studied as mechanotransducers. Due to space limitations, we focus on reviewing how mechanical forces and aging influence cell fate, communications and homeostasis through a dysregulated Hippo signalling pathway.
Hippo 信号通路是一条保守的激酶级联反应,协调着多种细胞过程,如增殖、凋亡、谱系决定和干性。随着社会老龄化的出现,骨骼衰老-力学-骨稳态的研究如雨后春笋般涌现。近年来,骨骼系统的衰老和机械力在骨骼系统的发育和稳态中取得了突破性的研究进展。在力学和衰老的调节下,Hippo 信号通路在骨骼稳态的发育和稳态中起着关键作用。我们综合了目前关于 Hippo 信号通路的作用的知识,特别是其下游效应物 yes 相关蛋白 (YAP) 和转录共激活因子与 PDZ 结合基序 (TAZ) 在骨骼稳态中的作用。我们讨论了 Hippo 信号通路对不同骨骼细胞类型的谱系特化和功能的调节。由于其对调节骨骼稳态的重要性,我们还提到了 Hippo 信号通路与其他途径(如 Wnt、转化生长因子-β和核因子 kappa-B)的相互作用。此外,YAP/TAZ 作为机械转导因子已经被广泛研究。由于篇幅限制,我们重点讨论了机械力和衰老如何通过失调的 Hippo 信号通路影响细胞命运、通讯和稳态。