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N6-甲基腺苷诱导的 miR-143-3p 通过调控 SOX5 促进椎间盘退变。

N6-Methyladenosine-induced miR-143-3p promotes intervertebral disc degeneration by regulating SOX5.

机构信息

Department of Spine Surgery, Yijishan Hospital of Wannan Medical College, No. 2 Zheshan West Road, Wuhu 241001, Anhui, China.

Key Laboratory of Non-Coding RNA Transformation Research of Anhui Higher Education Institution, No. 2 Zheshan West Road, Wuhu 241001, Anhui, China.

出版信息

Bone. 2022 Oct;163:116503. doi: 10.1016/j.bone.2022.116503. Epub 2022 Jul 23.

Abstract

Intervertebral disc degeneration is the basic cause of lumbocrural pain, which not only causes pain and but also serious economic burdens on patients. Increasingly more evidence has shown that tumor necrosis factor-α (TNF-α) is involved in the pathological process of intervertebral disc degeneration, but the specific molecular mechanism is still unclear. This study investigated the potential mechanism and function of methyltransferase-like 3 (METTL3)/miR-143-3p/SOX5 regulatory axis in nucleus pulposus cells under the action of TNF-α. Human nucleus pulposus cells were treated with TNF-α to construct an in vitro model of intervertebral disc degeneration. Flow cytometry, quantitative reverse-transcription PCR (RT-qPCR), Western blot (WB) and luciferase assays were used to identify the mechanism of action of miR-143-3p in the course of intervertebral disc degeneration in vitro and the downstream targeted regulatory molecules. The role of miR-143-3p in intervertebral disc degeneration was also validated by in vivo. RT-qPCR, WB, coimmunoprecipitation (Co-IP) and flow cytometry were used to verify the regulatory effect of METTL3 on miR-143-3p maturation. RT-qPCR and WB were adopted to detect differences in METTL3, miR-143-3p and SOX5 expression in human nucleus pulposus tissue. miR-143-3p in nucleus pulposus cells was involved in the regulation of extracellular matrix metabolism and apoptosis after TNF-α stimulation, and intervertebral disc degeneration was relieved by effectively regulating miR-143-3p expression. Subsequent experiments showed that the downstream direct target gene of miR-143-3p was SOX5 and that miR-143-3p negatively regulated the expression of SOX5. In addition, METTL3 promoted miR-143-3p maturation, and METTL3 and miR-143-3p were significantly upregulated in degenerative nucleus pulposus, an effect that was significantly negatively correlated with low SOX5 expression. In conclusion, TNF-α upregulates METTL3, METTL3 promotes miR-143-3p maturation, and miR-143-3p inhibits the transcriptional activity of SOX5 through targeted binding, thereby inducing intervertebral disc degeneration. The inhibition of METTL3 or miR-143-3p expression may be an effective way to treat intervertebral disc degeneration.

摘要

椎间盘退变为腰腿痛的基本病因,不仅引起疼痛,还给患者带来严重的经济负担。越来越多的证据表明肿瘤坏死因子-α(TNF-α)参与了椎间盘退变的病理过程,但具体的分子机制尚不清楚。本研究探讨了 TNF-α作用下核 髓核细胞中甲基转移酶样 3(METTL3)/miR-143-3p/SOX5 调节轴的潜在机制和功能。用 TNF-α处理人椎间盘髓核细胞,构建体外椎间盘退变模型。采用流式细胞术、实时定量逆转录 PCR(RT-qPCR)、Western blot(WB)和荧光素酶报告基因实验,鉴定 miR-143-3p 在体外椎间盘退变过程中的作用机制及下游靶向调控分子。通过体内实验验证 miR-143-3p 在椎间盘退变中的作用。采用 RT-qPCR、WB、免疫共沉淀(Co-IP)和流式细胞术验证 METTL3 对 miR-143-3p 成熟的调控作用。采用 RT-qPCR 和 WB 检测人椎间盘组织中 METTL3、miR-143-3p 和 SOX5 的表达差异。miR-143-3p 可调节 TNF-α刺激后椎间盘细胞外基质代谢和凋亡,有效调节 miR-143-3p 表达可缓解椎间盘退变。后续实验表明,miR-143-3p 的下游直接靶基因是 SOX5,miR-143-3p 负调控 SOX5 的表达。此外,METTL3 促进 miR-143-3p 的成熟,退变椎间盘组织中 METTL3 和 miR-143-3p 表达显著上调,且与 SOX5 低表达呈显著负相关。综上所述,TNF-α上调 METTL3,METTL3 促进 miR-143-3p 成熟,miR-143-3p 通过靶向结合抑制 SOX5 的转录活性,从而诱导椎间盘退变。抑制 METTL3 或 miR-143-3p 的表达可能是治疗椎间盘退变的有效方法。

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