Hu Zebing, Wang Yixuan, Sun Zhongyang, Wang Han, Zhou Hua, Zhang Lianchang, Zhang Shu, Cao Xinsheng
The Key Laboratory of Aerospace Medicine, Ministry of Education, The Fourth Military Medical University, 710032, Xi'an, Shaanxi, China.
Department of orthopedics, No.454 Hospital of PLA, Nanjing, Jiangsu 210002, P.R. China.
Sci Rep. 2015 Dec 21;5:18655. doi: 10.1038/srep18655.
Recent studies have demonstrated that miRNAs can play important roles in osteoblast differentiation and bone formation. However, the function of miRNAs in bone loss induced by microgravity remains unclear. In this study, we investigated the differentially expressed miRNAs in both the femur tissues of hindlimb unloading rats and primary rat osteoblasts (prOB) exposed to simulated microgravity. Specifically, miR-132-3p was found up-regulated and negatively correlated with osteoblast differentiation. Overexpression of miR-132-3p significantly inhibited prOB differentiation, whereas inhibition of miR-132-3p function yielded an opposite effect. Furthermore, silencing of miR-132-3p expression effectively attenuated the negative effects of simulated microgravity on prOB differentiation. Further experiments confirmed that E1A binding protein p300 (Ep300), a type of histone acetyltransferase important for Runx2 activity and stability, was a direct target of miR-132-3p. Up-regulation of miR-132-3p by simulated microgravity could inhibit osteoblast differentiation in part by decreasing Ep300 protein expression, which, in turn, resulted in suppression of the activity and acetylation of Runx2, a key regulatory factor of osteoblast differentiation. Taken together, our findings are the first to demonstrate that miR-132-3p can inhibit osteoblast differentiation and participate in the regulation of bone loss induced by simulated microgravity, suggesting a potential target for counteracting decreases in bone formation.
近期研究表明,微小RNA(miRNAs)在成骨细胞分化和骨形成过程中发挥着重要作用。然而,miRNAs在微重力诱导的骨质流失中的功能仍不清楚。在本研究中,我们调查了后肢卸载大鼠股骨组织和暴露于模拟微重力环境下的原代大鼠成骨细胞(prOB)中差异表达的miRNAs。具体而言,发现miR-132-3p上调,且与成骨细胞分化呈负相关。miR-132-3p的过表达显著抑制prOB分化,而抑制miR-132-3p的功能则产生相反的效果。此外,miR-132-3p表达的沉默有效减弱了模拟微重力对prOB分化的负面影响。进一步的实验证实,E1A结合蛋白p300(Ep300),一种对Runx2活性和稳定性很重要的组蛋白乙酰转移酶,是miR-132-3p的直接靶点。模拟微重力导致的miR-132-3p上调可部分通过降低Ep300蛋白表达来抑制成骨细胞分化,进而导致成骨细胞分化关键调节因子Runx2的活性和乙酰化受到抑制。综上所述,我们的研究结果首次证明miR-132-3p可抑制成骨细胞分化并参与模拟微重力诱导的骨质流失的调节,提示其可能是对抗骨形成减少的潜在靶点。