| Literature DB >> 33178690 |
Wenqing Xie1,2, Wenfeng Xiao1,2, Kun Tang3, Liyang Zhang4, Yusheng Li1,2.
Abstract
The Hippo/yes-associated protein 1 signaling pathway is an evolutionarily conserved signaling pathway. This signaling pathway is primarily involved in the regulation of stem cell self-renewal, organ size and tissue regeneration by regulating cell proliferation, differentiation and apoptosis. It plays an important role in embryonic development and tissue organ formation. Yes-associated protein 1 (YAP1) is a key transcription factor in the Hippo signaling pathway and is negatively regulated by this pathway. Changes in YAP1 expression levels affect the occurrence and development of a variety of tumors, but the specific mechanism associated with this phenomenon has not been thoroughly studied. Recently, several studies have described the role of YAP1 in osteoarthritis (OA). Indeed, YAP1 is involved in orthopedic degenerative diseases such as osteoporosis (OP) in addition to OA. In this review, we will summarize the significance of YAP1 in orthopedic degenerative diseases and discuss the potential of the targeted modulation of YAP1 for the treatment of these diseases.Entities:
Keywords: chondrocyte; mesenchymal stem cells; osteoarthritis; osteoporosis; yes-associated protein 1
Year: 2020 PMID: 33178690 PMCID: PMC7593614 DOI: 10.3389/fcell.2020.573455
Source DB: PubMed Journal: Front Cell Dev Biol ISSN: 2296-634X
FIGURE 1Modular structure of YAP1 protein.
FIGURE 2The specific signaling pathways of YAP1 promoting the occurrence and development of OA.
FIGURE 3The regulatory role of YAP1/TAZ in the osteogenic and adipogenic differentiation of MSCs.
FIGURE 4The effects of Piezo1 mediated mechanical stimulation in OB and OC.
The role of YAP1 in different cell types.
| Model | Function | References |
| Human articular chondrocytes | The number of nuclear YAP1-expressing cells in OA cartilage is significantly higher than that detected in normal cartilage | |
| Human MSCs | YAP1 is a negative regulator of chondrogenesis in mesenchymal stem cells | |
| Mouse MSCs | YAP1 promotes early chondrocyte proliferation by regulating SOX6 expression | |
| ATDC5 cell line | YAP1 negatively regulates chondrocyte differentiation by activating the β-catenin signaling pathway | |
| Mouse articular chondrocytes | The downregulation of YAP1 expression is associated with maintenance of chondrogenic phenotype | |
| Mouse MSCs and articular chondrocytes | The maintenance of the primary chondrocyte phenotype is associated with the exclusion of YAP1 from the nucleus; the increased expression of YAP1 in the nucleus promotes the osteogenic effects of MSCs, inhibits their adipogenic differentiation, and leads to dedifferentiation of chondrocytes | |
| Mouse embryonic fibroblasts and primary MSCs | YAP1/TAZ is the major regulator of cell fate that promotes osteogenesis and adipogenesis in MSCs | |
| Mouse MSCs | YAP1 can bind to RUNX2 and PPARγ in the nucleus to promote osteogenic differentiation of MSCs and inhibit their adipogenic differentiation | |
| Human MSCs | Low YAP1 levels promotes adipogenic differentiation but inhibits osteogenic differentiation | |
| Human MSCs | YAP1 or TAZ overexpression largely restores the ability of MSCs to differentiate into osteocytes and reverses adipogenic differentiation caused by kindlin-2 deletion. | |
| Mouse MSCs | The increased expression of YAP1 in the nucleus promotes the osteogenesis of MSCs, inhibits their adipogenic differentiation, and leads to dedifferentiation of chondrocytes | |
| Mouse osteoblast | The regulation of OB by YAP1/TAZ is closely associated with the developmental stage of individuals and the differentiation state of cells | |
| Mouse osteoblast | Piezo1 in osteoblasts promotes the expression of COL2α1 and COL9α2 in osteoblast cell lines through YAP1 | |
| Mouse osteoclast | YAP1 is an essential regulator for osteoclast differentiation and activity |