破坏小鼠 Bmal1 基因座会通过 TGF-β/BMP 信号促进衰老时的异位骨化。
Disruption of the mouse Bmal1 locus promotes heterotopic ossification with aging via TGF-beta/BMP signaling.
机构信息
Scientific Research Center, The Seventh Affiliated Hospital, Sun Yat-Sen University, Shenzhen, 518107, China.
Department of Pathology, The Seventh Affiliated Hospital, Sun Yat-Sen University, Shenzhen, 518107, China.
出版信息
J Bone Miner Metab. 2022 Jan;40(1):40-55. doi: 10.1007/s00774-021-01271-w. Epub 2021 Oct 9.
INTRODUCTION
Heterotopic ossification of tendons and ligaments is a painful and debilitating disease with no effective treatment. Although aging has been reported to be correlated with the occurrence and development of this disease, the mechanism remains unknown.
MATERIALS AND METHODS
In the present study, we generated Bmal1-/- mice, which disrupted the circadian clock and displayed premature aging, as an aging model to explore the role of Bmal1 in TGF-beta (β)/BMP signaling in progressive heterotopic ossification of tendons and ligaments with aging.
RESULTS
We first confirmed that BMAL1 expression is downregulated in human fibroblasts from ossification of the posterior longitudinal ligament using online datasets. Bmal1 deficiency in mice caused significantly progressive heterotopic ossification with aging starting at week 6, notably in the Achilles tendons and posterior longitudinal ligaments. Ossification of the Achilles tendons was accompanied by progressive motor dysfunction of the ankle joint. Histology and immunostaining showed markedly increased endochondral ossification in the posterior longitudinal ligaments and Achilles tendons of Bmal1-/- mice. Ligament-derived Bmal1-/- fibroblasts showed an osteoblast-like phenotype, upregulated osteogenic and chondrogenic markers, and activated TGFβ/BMP signaling, which was enhanced by TGFβ1 stimulation. Furthermore, Bmal1-/- mouse embryonic fibroblasts had a stronger potential for osteogenic differentiation with activation of TGFβ/BMP signaling.
CONCLUSIONS
These findings demonstrated that Bmal1 negatively regulates endochondral ossification in heterotopic ossification of tendons and ligaments with aging via TGFβ/BMP signaling, thereby identifying a new regulatory mechanism in age-related heterotopic ossification of tendons and ligaments.
简介
肌腱和韧带的异位骨化是一种痛苦且使人虚弱的疾病,目前尚无有效的治疗方法。虽然已有研究报道,衰老与该病的发生和发展相关,但具体机制尚不清楚。
材料和方法
本研究构建了生物钟基因 Bmal1 敲除(Bmal1-/-)小鼠模型,该模型出现了生物钟紊乱和早衰表型,以此来探讨 Bmal1 在 TGF-β(β)/BMP 信号通路调控肌腱和韧带进行性异位骨化中的作用。
结果
我们首先通过在线数据集证实,BMAL1 在骨化性后纵韧带的成纤维细胞中表达下调。Bmal1 缺失的小鼠在 6 周龄时开始出现明显的进行性异位骨化,尤其是在后纵韧带和跟腱中。跟腱异位骨化导致踝关节运动功能逐渐丧失。组织学和免疫组化染色显示,Bmal1-/- 小鼠的后纵韧带和跟腱中出现明显的软骨内骨化。来源于韧带的 Bmal1-/- 成纤维细胞呈现出成骨细胞样表型,骨形成和软骨形成标志物表达上调,并激活了 TGFβ/BMP 信号通路,该通路在 TGFβ1 刺激下进一步增强。此外,Bmal1-/- 小鼠胚胎成纤维细胞具有更强的成骨分化潜能,其 TGFβ/BMP 信号通路被激活。
结论
这些结果表明,Bmal1 通过 TGFβ/BMP 信号通路负调控肌腱和韧带进行性异位骨化中的软骨内骨化,从而为肌腱和韧带的年龄相关性异位骨化提供了一个新的调控机制。