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KMID : 0620920210530040591
Experimental & Molecular Medicine
2021 Volume.53 No. 4 p.591 ~ p.604
Hypoxia-inducible factor-2¥á mediates senescence-associated intrinsic mechanisms of age-related bone loss
Lee Sun-Young

Park Ka-Hyon
Lee Gyu-Seok
Kim Su-Jin
Song Won-Hyun
Kwon Seung-Hee
Koh Jeong-Tae
Huh Yun-Hyun
Ryu Je-Hwang
Abstract
Aging is associated with cellular senescence followed by bone loss leading to bone fragility in humans. However, the regulators associated with cellular senescence in aged bones need to be identified. Hypoxia-inducible factor (HIF)?2¥á regulates bone remodeling via the differentiation of osteoblasts and osteoclasts. Here, we report that HIF-2¥á expression was highly upregulated in aged bones. HIF-2¥á depletion in male mice reversed age-induced bone loss, as evidenced by an increase in the number of osteoblasts and a decrease in the number of osteoclasts. In an in vitro model of doxorubicin-mediated senescence, the expression of Hif-2¥á and p21, a senescence marker gene, was enhanced, and osteoblastic differentiation of primary mouse calvarial preosteoblast cells was inhibited. Inhibition of senescence-induced upregulation of HIF-2¥á expression during matrix maturation, but not during the proliferation stage of osteoblast differentiation, reversed the age-related decrease in Runx2 and Ocn expression. However, HIF-2¥á knockdown did not affect p21 expression or senescence progression, indicating that HIF-2¥á expression upregulation in senescent osteoblasts may be a result of aging rather than a cause of cellular senescence. Osteoclasts are known to induce a senescent phenotype during in vitro osteoclastogenesis. Consistent with increased HIF-2¥á expression, the expression of p16 and p21 was upregulated during osteoclastogenesis of bone marrow macrophages. ChIP following overexpression or knockdown of HIF-2¥á using adenovirus revealed that p16 and p21 are direct targets of HIF-2¥á in osteoclasts. Osteoblast-specific (Hif-2¥áfl/fl;Col1a1-Cre) or osteoclast-specific (Hif-2¥áfl/fl;Ctsk-Cre) conditional knockout of HIF-2¥á in male mice reversed age-related bone loss. Collectively, our results suggest that HIF-2¥á acts as a senescence-related intrinsic factor in age-related dysfunction of bone homeostasis.
KEYWORD
Cell biology, Diseases
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