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Histone demethylase LSD1 is critical for endochondral ossification during bone fracture healing

机译:组蛋白脱甲基酶LSD1对于骨折愈合期间的内核骨化至关重要

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摘要

Bone fracture is repaired predominantly through endochondral ossification. However, the regulation of endochondral ossification by key factors during fracture healing remains largely enigmatic. Here, we identify histone modification enzyme LSD1 as a critical factor regulating endochondral ossification during bone regeneration. Loss of LSD1 in Prx1 lineage cells severely impaired bone fracture healing. Mechanistically, LSD1 tightly controls retinoic acid signaling through regulation of Aldh1a2 expression level. The increased retinoic acid signaling in LSD1-deficient mice suppressed SOX9 expression and impeded the cartilaginous callus formation during fracture repair. The discovery that LSD1 can regulate endochondral ossification during fracture healing will benefit the understanding of bone regeneration and have implications for regenerative medicine.
机译:骨骨折主要通过CodoChondrosl骨化修复。然而,在骨折愈合期间按关键因素调节内核骨化仍然很重要。这里,我们将组蛋白修饰酶LSD1鉴定为骨再生期间调节内心骨化的关键因素。 PRX1谱系细胞中LSD1的损失严重受损的骨折愈合。机械地,LSD1通过ALDH1A2表达水平的调节紧密地控制视黄酸信号传导。 LSD1缺陷小鼠中的维甲酸信号量增加抑制SOX9表达并在断裂修复期间阻碍了软骨愈伤组织形成。发现LSD1可以调节骨折治疗期间的子宫内化会有利于对骨再生的理解,并对再生医学产生影响。

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