Zhao Dezhi, Hua Rui, Riquelme Manuel A, Cheng Hongyun, Guda Teja, Xu Huiyun, Gu Sumin, Jiang Jean X
Department of Biochemistry and Structural Biology, University of Texas Health Science Center, San Antonio, TX, USA.
School of Life Sciences, Northwestern Polytechnical University, Xi'an, China.
Bone Res. 2022 Jul 18;10(1):49. doi: 10.1038/s41413-022-00222-z.
Physical mechanical stimulation can maintain and even increase bone mass. Here, we report an important role of osteocytic integrin α5 in regulating the anabolic response of bone to mechanical loading using an Itga5 conditional gene knockout (cKO) mouse model. Integrin α5 gene deletion increased apoptotic osteocytes and reduced cortical anabolic responses to tibial compression including decreased endosteal osteoblasts and bone formation, and increased endosteal osteoclasts and bone resorption, contributing to the decreased bone area fraction and biomechanical properties, leading to an enlarged bone marrow area in cKO mice. Similar disruption of anabolic responses to mechanical loading was also detected in cKO trabecular bone. Moreover, integrin α5 deficiency impeded load-induced Cx43 hemichannel opening, and production and release of PGE2, an anabolic factor, resulting in attenuated effects of the loading on catabolic sclerostin (SOST) reduction and anabolic β-catenin increase. Together, this study shows an indispensable role of integrin α5 in osteocytes in the anabolic action of mechanical loading on skeletal tissue through activation of hemichannels and PGE2-evoked gene expression. Integrin α5 could act as a potential new therapeutic target for bone loss, especially in the elderly population with impeded mechanical sensitivity.
物理机械刺激能够维持甚至增加骨量。在此,我们利用整合素α5条件性基因敲除(cKO)小鼠模型,报道了骨细胞整合素α5在调节骨骼对机械负荷的合成代谢反应中的重要作用。整合素α5基因缺失增加了凋亡的骨细胞,降低了皮质骨对胫骨压缩的合成代谢反应,包括骨内膜成骨细胞减少和骨形成减少,以及骨内膜破骨细胞增加和骨吸收增加,导致骨面积分数和生物力学性能下降,致使cKO小鼠的骨髓面积增大。在cKO小梁骨中也检测到对机械负荷的合成代谢反应出现类似破坏。此外,整合素α5缺乏阻碍了负荷诱导的Cx43半通道开放以及合成代谢因子前列腺素E2(PGE2)的产生和释放,导致负荷对分解代谢因子硬化蛋白(SOST)减少和合成代谢因子β-连环蛋白增加的作用减弱。总之,本研究表明整合素α5在骨细胞中通过激活半通道和PGE2引发的基因表达,在机械负荷对骨骼组织的合成代谢作用中发挥不可或缺的作用。整合素α5可能成为骨质流失的潜在新治疗靶点,尤其是在机械敏感性受损的老年人群中。