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首页> 外文期刊>Bone research >Disruption of Dhcr7 and Insig1/2 in cholesterol metabolism causes defects in bone formation and homeostasis through primary cilium formation
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Disruption of Dhcr7 and Insig1/2 in cholesterol metabolism causes defects in bone formation and homeostasis through primary cilium formation

机译:胆固醇代谢中的DHCR7和INSIG1 / 2的破坏导致骨髓形成和稳态的缺陷通过初级纤毛形成

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Human linkage studies suggest that craniofacial deformities result from either genetic mutations related to cholesterol metabolism or high-cholesterol maternal diets. However, little is known about the precise roles of intracellular cholesterol metabolism in the development of craniofacial bones, the majority of which are formed through intramembranous ossification. Here, we show that an altered cholesterol metabolic status results in abnormal osteogenesis through dysregulation of primary cilium formation during bone formation. We found that cholesterol metabolic aberrations, induced through disruption of either Dhcr7 (which encodes an enzyme involved in cholesterol synthesis) or Insig1 and Insig2 (which provide a negative feedback mechanism for cholesterol biosynthesis), result in osteoblast differentiation abnormalities. Notably, the primary cilia responsible for sensing extracellular cues were altered in number and length through dysregulated ciliary vesicle fusion in Dhcr7 and Insig1/2 mutant osteoblasts. As a consequence, WNT/β-catenin and hedgehog signaling activities were altered through dysregulated primary cilium formation. Strikingly, the normalization of defective cholesterol metabolism by simvastatin, a drug used in the treatment of cholesterol metabolic aberrations, rescued the abnormalities in both ciliogenesis and osteogenesis in vitro and in vivo. Thus, our results indicate that proper intracellular cholesterol status is crucial for primary cilium formation during skull formation and homeostasis.? The Author(s) 2020.
机译:人的联系研究表明,颅面畸形是由与胆固醇代谢或高胆固醇母体饮食有关的遗传突变。然而,关于细胞内胆固醇代谢在颅面骨的发育中的精确作用很少,其中大多数通过膜质骨化形成。在这里,我们表明,通过在骨形成期间通过初级纤毛形成的失调,改变了胆固醇代谢状态的异常骨质发生。我们发现通过破坏DHCR7(编码胆固醇合成中的酶)或INSIG1和INSIG2(这提供了胆固醇生物合成的负反馈机制)诱导的胆固醇代谢像差诱导,导致成骨细胞分化异常。值得注意的是,负责感测细胞外提示的原发性纤毛在数量和长度中通过DHCR7和INSIG1 / 2突变体骨质细胞中的具有疑难的睫状囊泡融合来改变。因此,通过具有疑虑的原发性纤毛形成改变Wnt /β-catenin和Hedgehog信号传导活性。令人惊讶的是,辛伐他汀的缺陷胆固醇代谢的正常化,用于治疗胆固醇代谢像差的药物,在体外和体内拯救了含有纤毛发生和骨质发生的异常。因此,我们的结果表明,适当的细胞内胆固醇地位对于颅骨形成和稳态期间的原发性纤毛肿是至关重要的。?作者2020年。

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