Maine Medical Center Research Institute, Maine Medical Center, Scarborough, ME 04074, USA.
Division of Bone and Mineral Research, Harvard School of Dental Medicine, Boston, MA 02115, USA.
Bone. 2021 Mar;144:115832. doi: 10.1016/j.bone.2020.115832. Epub 2020 Dec 23.
Conditional deletion of the PTH receptor (Pth1r) in mesenchymal progenitors reduces osteoblast differentiation and bone mass while enhancing adipogenesis and bone marrow adipose tissue. Mechanistically, PTH suppresses the expression of Zfp467, a pro-adipogenic zinc finger transcription factor. Consequently, Pth1r deficiency in mesenchymal progenitors leads to increased Zfp467 expression. Based on these observations, we hypothesized that genetic loss of Zfp467 would lead to a shift in marrow progenitor cell fate towards osteogenesis and increased bone mass. To test this hypothesis, we generated Zfp467-/- mice. Zfp467-/- mice (-/-) were significantly smaller than Zfp467+/+ mice (+/+). μCT showed significantly higher trabecular bone and cortical bone area in -/- vs. +/+, and histomorphometry showed higher structural and dynamic formation parameters in -/- mice vs. +/+. Femoral gene expression including Alpl, Sp7, and Acp5 were increased in -/-mice, whereas Adiponectin, Cebpa, Lepr, and Ppraγ mRNA were lower in -/- mice. Similarly, Fabp4 and Lep in the inguinal depot were also decreased in -/- mice. Moreover, marrow adipocyte numbers were reduced in -/- vs +/+ mice (p<0.007). In vitro, COBs and BMSCs-/- showed more positive ALP and Alizarin Red staining and a decrease in ORO droplets. Pth1r mRNA and protein levels were increased in COBs and BMSCs from -/- mice vs +/+ (p<0.02 for each parameter, -/- vs. +/+). -/- cells also exhibited enhanced endogenous levels of cAMP vs. control cells. Moreover, in an ovariectomy (OVX) mouse model, Zfp467-/- mice had significantly lower fat mass but similar bone mass compared to OVX +/+ mice. In contrast, in a high fat diet (HFD) mouse model, in addition to reduced adipocyte volume and adipogenesis related gene expression in both peripheral and bone marrow fat tissue, greater osteoblast number and higher osteogenesis related gene expression were also observed in -/- HFD mice vs. +/+ HFD mice. Taken together, these results demonstrate that ZFP467 negatively influences skeletal homeostasis and favors adipogenesis. Global deletion of Zfp467 increases PTHR1, cAMP and bone turnover, hence its repression is a component of PTH signaling and its regulation. These data support a critical role for Zfp467 in early lineage allocation and provide a novel potential mechanism by which PTH acts in an anabolic manner on the bone remodeling unit.
条件性敲除间充质祖细胞中的甲状旁腺素受体 (Pth1r) 会减少成骨细胞分化和骨量,同时增强脂肪生成和骨髓脂肪组织。在机制上,甲状旁腺素抑制了脂肪生成锌指转录因子 Zfp467 的表达。因此,间充质祖细胞中的 Pth1r 缺失会导致 Zfp467 表达增加。基于这些观察结果,我们假设遗传缺失 Zfp467 会导致骨髓祖细胞命运向成骨方向转变,并增加骨量。为了验证这一假设,我们生成了 Zfp467-/- 小鼠。Zfp467-/- 小鼠 (-/-) 明显小于 Zfp467+/+ 小鼠 (+/+)。μCT 显示 -/- 与 +/相比,骨小梁和皮质骨面积明显更高,组织形态计量学显示 -/- 小鼠的结构和动态形成参数更高。-/- 小鼠的股骨基因表达包括 Alpl、Sp7 和 Acp5 增加,而 Adiponectin、Cebpa、Lepr 和 Ppraγ mRNA 在 -/- 小鼠中降低。同样,-/- 小鼠腹股沟脂肪垫中的 Fabp4 和 Lep 也减少。此外,骨髓脂肪细胞数量在 -/- 与 +/+ 小鼠中减少(p<0.007)。在体外,COBs 和 BMSCs-/- 显示出更多的 ALP 和茜素红染色阳性,油红 O 滴减少。与 +/+ 相比,-/- 小鼠的 COBs 和 BMSCs 中的 Pth1r mRNA 和蛋白水平增加(p<0.02,-/- 与 +/+)。-/- 细胞还表现出增强的内源性 cAMP 水平与对照细胞相比。此外,在卵巢切除 (OVX) 小鼠模型中,与 OVX +/+ 小鼠相比,Zfp467-/- 小鼠的脂肪量显著降低,但骨量相似。相比之下,在高脂肪饮食 (HFD) 小鼠模型中,除了外周和骨髓脂肪组织中脂肪细胞体积和脂肪生成相关基因表达减少外,-/-HFD 小鼠的成骨细胞数量增加,成骨相关基因表达也更高与 +/+HFD 小鼠相比。总之,这些结果表明 ZFP467 负向影响骨骼稳态并有利于脂肪生成。Zfp467 的全局缺失会增加 PTHR1、cAMP 和骨转换,因此其抑制是甲状旁腺素信号的组成部分及其调节。这些数据支持 Zfp467 在早期谱系分配中的关键作用,并提供了甲状旁腺素以合成方式作用于骨重塑单位的新的潜在机制。