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微小 RNA-365 通过靶向组蛋白去乙酰化酶 4 作为一种机械敏感 microRNA 抑制终板软骨细胞退变。

MicroRNA-365 functions as a mechanosensitive microRNA to inhibit end plate chondrocyte degeneration by targeting histone deacetylase 4.

机构信息

Department of Orthopedic Surgery, Luan People's Hospital, Luan Hospital Affiliated of Anhui Medical University, Luan 237001, Anhui, China; Spine Research Center of Wannan Medical Colleg, Key Laboratory of Non-coding RNA Transformation Research of Anhui Higher Education Institution(Wannan Medical College), Dept of Spine Surgery, Yijishan hospital, The first affiliated hospital of Wannan Medical College, Wuhu, Anhui 241001, China.

Department of Orthopedic Surgery, Luan People's Hospital, Luan Hospital Affiliated of Anhui Medical University, Luan 237001, Anhui, China.

出版信息

Bone. 2019 Nov;128:115052. doi: 10.1016/j.bone.2019.115052. Epub 2019 Aug 28.

Abstract

End plate chondrocyte degeneration is a major cause of intervertebral disc degeneration. Mechanical biophysical forces, including intermittent cyclic mechanical tension (ICMT), exacerbate end plate chondrocyte degeneration. However, the underlying molecular mechanism of mechanical stretch-induced end plate chondrocyte degeneration is still unclear. This study sought to determine whether microRNAs (miRNAs) respond to mechanical stretch and play a role in regulating mechanically-induced end plate chondrocyte degeneration. We identified miR-365 as a mechanoresponsive miRNA in primary human end plate chondrocytes after ICMT application by miRNA microarray analysis. The expression of miR-365 was down-regulated in the disc samples obtained from patients with disc degeneration. We also found that the miR-365 stimulates chondrocyte proliferation but does not promote end plate chondrocyte death. Using bioinformatic analyses and subsequent confirmation by real-time RT-PCR, we identified multiple candidate target genes of miR-365 that responded to in vitro mechanical stimulation; among them, HDAC4 was fully characterized. Mutation of putative miR-365 binding sites in HDAC4 mRNA abolished miR-365 mediated repression of HDAC4 3'-untranslated region (3'UTR) luciferase reporter activity, suggesting that miR-365 binds to the HDAC4 3'UTR. Overexpression of miR-365 significantly decreased the HDAC4 protein level, suggesting that miR-365 acts as an endogenous attenuator of HDAC4 in human end plate chondrocytes. Further, perturbation of miR-365 expression also had a significant effect on the expression of COL2A and ACAN and on matrix degeneration. Overexpression of HDAC4 abolished miR-365 rescued end plate chondrocyte degeneration during ICMT application. Furthermore, we found that the wnt/β-catenin signal pathway was related to HDAC4 and promoted end plate chondrocyte degeneration. Overall, our results suggest that miR-365 is a mechanosensitive miRNA that regulates human chondrocyte degeneration by directly targeting HDAC4. We propose that therapeutic regulation of miR-365 may be an efficient anabolic strategy for inhibiting end plate chondrocyte degeneration.

摘要

终板软骨细胞退变是椎间盘退变的主要原因。机械生物力学力,包括间歇性循环机械张力(ICMT),加剧了终板软骨细胞退变。然而,机械拉伸诱导终板软骨细胞退变的潜在分子机制尚不清楚。本研究旨在确定 microRNAs(miRNAs)是否对机械拉伸有反应,并在调节机械诱导的终板软骨细胞退变中发挥作用。通过 miRNA 微阵列分析,我们发现原发性人终板软骨细胞在 ICMT 应用后,miR-365 是一种机械反应性 miRNA。退变椎间盘样本中的 miR-365 表达下调。我们还发现,miR-365 刺激软骨细胞增殖,但不促进终板软骨细胞死亡。通过生物信息学分析和随后的实时 RT-PCR 验证,我们确定了 miR-365 的多个候选靶基因,这些靶基因对体外机械刺激有反应;其中,HDAC4 得到了充分的表征。HDAC4 mRNA 中假定的 miR-365 结合位点的突变消除了 miR-365 对 HDAC4 3'非翻译区(3'UTR)荧光素酶报告基因活性的抑制作用,表明 miR-365 结合到 HDAC4 3'UTR。miR-365 的过表达显著降低了 HDAC4 蛋白水平,表明 miR-365 在人终板软骨细胞中作为 HDAC4 的内源性抑制剂发挥作用。进一步,miR-365 表达的扰动对 COL2A 和 ACAN 的表达和基质退变也有显著影响。HDAC4 的过表达消除了 miR-365 挽救 ICMT 应用过程中终板软骨细胞退变的作用。此外,我们发现 wnt/β-catenin 信号通路与 HDAC4 相关,并促进终板软骨细胞退变。总体而言,我们的结果表明,miR-365 是一种机械敏感的 miRNA,通过直接靶向 HDAC4 调节人软骨细胞退变。我们提出,miR-365 的治疗调节可能是抑制终板软骨细胞退变的有效合成代谢策略。

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