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Transcriptional Modulator Ifrd1 Regulates Osteoclast Differentiation through Enhancing the NF-κB/NFATc1 Pathway

机译:转录调节因子Ifrd1通过增强NF-κB/ NFATc1途径调节破骨细胞分化。

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摘要

Bone homeostasis is maintained by the synergistic actions of bone-resorbing osteoclasts and bone-forming osteoblasts. Here, we show that the transcriptional coactivator/repressor interferon-related developmental regulator 1 (Ifrd1) is expressed in osteoclast lineages and represents a component of the machinery that regulates bone homeostasis. Ifrd1 expression was transcriptionally regulated in preosteoclasts by receptor activator of nuclear factor κB (NF-κB) ligand (RANKL) through activator protein 1. Global deletion of murine Ifrd1 increased bone formation and decreased bone resorption, leading to a higher bone mass. Deletion of Ifrd1 in osteoclast precursors prevented RANKL-induced bone loss, although no bone loss was observed under normal physiological conditions. RANKL-dependent osteoclastogenesis was impaired in vitro in Ifrd1-deleted bone marrow macrophages (BMMs). Ifrd1 deficiency increased the acetylation of p65 at residues K122 and K123 via the inhibition of histone deacetylase-dependent deacetylation in BMMs. This repressed the NF-κB-dependent transcription of nuclear factor of activated T cells, cytoplasmic 1 (NFATc1), an essential regulator of osteoclastogenesis. These findings suggest that an Ifrd1/NF-κB/NFATc1 axis plays a pivotal role in bone remodeling in vivo and represents a therapeutic target for bone diseases.
机译:通过骨吸收破骨细胞和成骨成骨细胞的协同作用来维持骨稳态。在这里,我们显示出转录共激活因子/阻遏物干扰素相关的发育调节因子1(Ifrd1)在破骨细胞谱系中表达,代表了调节骨稳态的机制的组成部分。 Ifrd1的表达在破骨细胞中被激活因子1的核因子κB(NF-κB)配体的受体激活物(RANKL)转录调控。鼠Ifrd1的整体缺失增加了骨形成并降低了骨吸收,从而导致了更高的骨量。尽管在正常生理条件下未观察到骨丢失,但破骨细胞前体中Ifrd1的缺失阻止了RANKL诱导的骨丢失。在体外,Ifrd1缺失的骨髓巨噬细胞(BMM)中,RANKL依赖的破骨细胞发生受到损害。 Ifrd1缺乏症通过抑制BMM中组蛋白脱乙酰基酶依赖性脱乙酰基作用,增加了残基K122和K123处p65的乙酰化程度。这抑制了活化T细胞核质因子NF-κB依赖性转录,胞质1(NFATc1)是破骨细胞生成的重要调节剂。这些发现表明,Ifrd1 /NF-κB/ NFATc1轴在体内骨骼重塑中起着关键作用,并代表了骨骼疾病的治疗目标。

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