miR-29cb2 promotes angiogenesis and osteogenesis by inhibiting HIF-3α in bone

miR-29cb2 通过抑制骨骼中的 HIF-3α 促进血管生成和成骨作用

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作者:Liping Ouyang, Yingxiao Sun, Dan Lv, Xiaochun Peng, Xiaoming Liu, Lei Ci, Guoning Zhang, Bo Yuan, Ling Li, Jian Fei, Jun Ma, Xuanyong Liu, Yun Liao

Abstract

Coordination between osteogenesis and angiogenesis is required for bone homeostasis. Here, we show that miR-29cb2 is a bone-specific miRNA and plays critical roles on angiogenesis-osteogenesis coupling during bone remodeling. Mice with deletion of miR-29cb2 exhibit osteopenic phenotypes and osteoblast impairment, accompanied by pronounced decreases in specific H vessels. The decrease in bone miR-29cb2 was associated with pathological ovariectomy stimuli. Mechanistically, hypoxia-inducible factor (HIF)-3α, as a target for miR-29cb2, inhibits HIF-1α activity by competitively bonding with HIF-1β. Notably, miR-29cb2 in peripheral blood (PB) nearly is undetectable in sham and significantly increases in ovariectomy mice. Further evaluation from osteoporosis patients demonstrates similar signatures. ROC analysis shows miR-29cb2 in PB has higher sensitivity and specificity for diagnosing osteoporosis when compared with four clinical biomarkers. Collectively, these findings reveal that miR-29cb2 is essential for bone remodeling by inhibiting HIF-3α and elevated bone-specific miR-29cb2 in PB, which may be a promising biomarker for bone loss.

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