Mechanical sensing protein PIEZO1 regulates bone homeostasis via osteoblast-osteoclast crosstalk
- 01PIEZO1 is identified as a major mechanical sensor for bone homeostasis
- 02Lack of PIEZO1 in osteoblasts leads to increased bone resorption and fractures
- 03The protein regulates osteoblast-osteoclast communication through YAP-dependent collagen expression
- 04Findings explain how mechanical forces are translated into biological signals for bone remodeling
The PIEZO1 protein acts as a key mechanical sensor that helps the skeleton adapt its strength and density to physical loading.
Wolff's law and the Utah Paradigm of skeletal physiology state that bone architecture adapts to mechanical loads. These models predict the existence of a mechanostat that links strain induced by mechanical forces to skeletal remodeling. However, how the mechanostat influences bone remodeling remains elusive. Here, we find that Piezo1 deficiency in osteoblastic cells leads to loss of bone mass and spontaneous fractures with increased bone resorption. Furthermore, Piezo1-deficient mice are resistant to further bone loss and bone resorption induced by hind limb unloading, demonstrating that PIEZO1 can affect osteoblast-osteoclast crosstalk in response to mechanical forces. At the mechanistic level, in response to mechanical loads, PIEZO1 in osteoblastic cells controls the YAP-dependent expression of type II and IX collagens. In turn, these collagen isoforms regulate osteoclast differentiation. Taken together, our data identify PIEZO1 as the major skeletal mechanosensor that tunes bone homeostasis.
- APA
- Lijun Wang, Xiuling You, Sutada Lotinun, Lingli Zhang, Nan Wu, & Weiguo Zou (2020). Mechanical sensing protein PIEZO1 regulates bone homeostasis via osteoblast-osteoclast crosstalk. https://fasciaresearchdatabase.com/mechanical-sensing-protein-piezo1-regulates-bone-homeostasis-via-osteoblast-osteoclast-crosstalk/
- MLA
- Lijun Wang, et al. "Mechanical sensing protein PIEZO1 regulates bone homeostasis via osteoblast-osteoclast crosstalk." 2020, https://fasciaresearchdatabase.com/mechanical-sensing-protein-piezo1-regulates-bone-homeostasis-via-osteoblast-osteoclast-crosstalk/.
- Chicago
- Lijun Wang et al. 2020. "Mechanical sensing protein PIEZO1 regulates bone homeostasis via osteoblast-osteoclast crosstalk.". https://fasciaresearchdatabase.com/mechanical-sensing-protein-piezo1-regulates-bone-homeostasis-via-osteoblast-osteoclast-crosstalk/
