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METTL3 通过调控 m6A 甲基化修饰的 miR-320a 加速金黄色葡萄球菌蛋白 A(SpA)诱导的骨髓炎进展。

METTL3 accelerates staphylococcal protein A (SpA)-induced osteomyelitis progression by regulating m6A methylation-modified miR-320a.

机构信息

Department of Orthopedic Trauma Surgery, Meizhou People's Hospital, Meizhou, 514031, China.

Department of Orthopedics, 920th Hospital of the Joint Logistics Force of the People's Liberation Army, No. 212, Daguan Road, Xishan District, Kunming, 650032, China.

出版信息

J Orthop Surg Res. 2024 Nov 6;19(1):729. doi: 10.1186/s13018-024-05164-2.

Abstract

Osteomyelitis (OM) is an inflammatory disease of bone infection and destruction characterized by dysregulation of bone homeostasis. Staphylococcus aureus (SA) has been reported to be the most common pathogen causing infectious OM. Recent studies have demonstrated that N6-methyladenosine (m6A) regulators are associated with the development of OM. However, the molecular mechanism of m6A modifications in OM remains unclear. Here, we investigated the function of methyltransferase-like 3 (METTL3)-mediated m6A modification in OM development. In this study, human bone mesenchymal stem cells (hBMSCs) were treated with staphylococcal protein A (SpA), a vital virulence factor of SA, to construct cell models of OM. Firstly, we found that METTL3 was upregulated in OM patients and SpA-induced hBMSCs, and SpA treatment suppressed osteogenic differentiation and induced oxidative stress and inflammatory injury in hBMSCs. Functional experiments showed that METTL3 knockdown alleviated the inhibition of osteogenic differentiation and the promotion of oxidative stress and inflammation in SpA-treated hBMSCs. Furthermore, METTL3-mediated m6A modification upregulated miR-320a expression by promoting pri-miR-320a maturation, and the mitigating effects of METTL3 knockdown on SpA-mediated osteogenic differentiation, oxidative stress and inflammatory responses can be reversed by miR-320 mimic. In addition, we demonstrated that phosphatidylinositol-4, 5-bisphosphate 3-kinase catalytic subunit alpha (PIK3CA) was a downstream target of miR-320a, upregulation of PIK3CA alleviated miR-320a-induced inhibition of osteogenic differentiation, and upregulation of oxidative stress and inflammatory responses during SpA infection. Finally, we found that silencing METTL3 alleviated OM development by regulating the miR-320a/PIK3CA axis. Taken together, our data demonstrated that the METTL3/m6A/miR-320a/PIK3CA axis regulated SpA-mediated osteogenic differentiation, oxidative stress, and inflammatory responses in OM, which may provide a new therapeutic strategy for OM patients.

摘要

骨髓炎(OM)是一种以骨稳态失调为特征的骨骼感染和破坏的炎症性疾病。金黄色葡萄球菌(SA)已被报道为引起感染性 OM 的最常见病原体。最近的研究表明,N6-甲基腺苷(m6A)调节剂与 OM 的发展有关。然而,m6A 修饰在 OM 中的分子机制尚不清楚。在这里,我们研究了甲基转移酶样 3(METTL3)介导的 m6A 修饰在 OM 发展中的作用。在这项研究中,用人骨髓间充质干细胞(hBMSCs)用金黄色葡萄球菌蛋白 A(SpA)处理,构建 OM 的细胞模型。首先,我们发现 METTL3 在 OM 患者和 SpA 诱导的 hBMSCs 中上调,SpA 处理抑制成骨分化,并诱导 hBMSCs 中的氧化应激和炎症损伤。功能实验表明,METTL3 敲低减轻了 SpA 处理对 hBMSCs 成骨分化的抑制作用,以及对氧化应激和炎症的促进作用。此外,METTL3 介导的 m6A 修饰通过促进 pri-miR-320a 成熟而上调 miR-320a 的表达,METTL3 敲低对 SpA 介导的成骨分化、氧化应激和炎症反应的缓解作用可被 miR-320a 模拟物逆转。此外,我们证明了磷脂酰肌醇-4,5-二磷酸 3-激酶催化亚单位α(PIK3CA)是 miR-320a 的下游靶标,PIK3CA 的上调缓解了 miR-320a 诱导的成骨分化抑制作用,并上调了 SpA 感染期间的氧化应激和炎症反应。最后,我们发现沉默 METTL3 通过调节 miR-320a/PIK3CA 轴减轻 OM 发展。总之,我们的数据表明,METTL3/m6A/miR-320a/PIK3CA 轴调节 SpA 介导的 OM 中成骨分化、氧化应激和炎症反应,这可能为 OM 患者提供一种新的治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c178/11542406/24e4bea072cb/13018_2024_5164_Fig1_HTML.jpg

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