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Oxygen-sensing PHDs regulate bone homeostasis through the modulation of osteoprotegerin

机译:氧气传感PHD通过骨蛋白酶的调节调节骨稳态

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摘要

The bone microenvironment is composed of niches that house cells across variable oxygen tensions. However, the contribution of oxygen gradients in regulating bone and blood homeostasis remains unknown. Here, we generated mice with either single or combined genetic inactivation of the critical oxygen-sensing prolyl hydroxylase (PHD) enzymes (PHD1-3) in osteoprogenitors. Hypoxia-inducible factor (HIF) activation associated with Phd2 and Phd3 inactivation drove bone accumulation by modulating osteoblastic/osteoclastic cross-talk through the direct regulation of osteoprotegerin (OPG). In contrast, combined inactivation of Phd1, Phd2, and Phd3 resulted in extreme HIF signaling, leading to polycythemia and excessive bone accumulation by overstimulating angiogenic-osteogenic coupling. Wealso demonstrate that genetic ablation of Phd2 and Phd3 was sufficient to protect ovariectomized mice against bone loss without disrupting hematopoietic homeostasis. Importantly, we identify OPG as a HIF target gene capable of directing osteoblast-mediated osteoclastogenesis to regulate bone homeostasis. Here, we show that coordinated activation of specific PHD isoforms fine-tunes the osteoblastic response to hypoxia, thereby directing two important aspects of bone physiology: cross-talk between osteoblasts and osteoclasts and angiogenic-osteogenic coupling.
机译:骨髓微环境由占跨越可变氧气缩差的细胞的利基组成。然而,氧梯度在调节骨骼和血型稳态中的贡献仍然未知。在此,我们在骨催化剂中产生具有单一或组合遗传灭活的小鼠或组合遗传灭绝骨催化剂(PHD)酶(PHD1-3)。缺氧诱导因子(HIF)与PHD2和PHD3灭活相关的激活通过调节骨赘通过直接调节Osteoproperin(OPG)的骨细胞/骨质体串扰驱动骨积累。相反,PHD1,PHD2和PHD3的组合失活导致极端的HIF信号传导,导致多胆血症和通过过度血管生成 - 成骨偶联的过度积累。威尔索证明pHD2和pHD3的遗传消融足以保护卵巢切除小鼠免受骨质损失而不会破坏造血稳态。重要的是,我们将OPG鉴定为能够引导成骨细胞介导的骨酸发生的HIF靶基因以调节骨稳态。在这里,我们表明特异性PHD同种型的协调激活细微曲调缺氧的骨细胞反应,从而引导骨生理学的两个重要方面:串扰 - 骨细胞和骨质体和血管生成 - 成骨偶联偶联偶联。

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