LINC00240通过影响dnmt1依赖的PU.1甲基化对变应性鼻炎t -辅助性9分化的作用

IF 4.3 3区 材料科学 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
ACS Applied Electronic Materials Pub Date : 2024-04-01 Epub Date: 2023-11-15 DOI:10.1007/s12026-023-09435-8
JianGuo Liu, XunShuo Jiang, Ke Liu, JianJian Deng, Yi Qiu, Wan Wei, ChunPing Yang
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引用次数: 0

摘要

背景:变应性鼻炎(Allergic rhinitis, AR)是一种常见的变应性疾病,在全球范围内的患病率呈上升趋势。然而,AR发病机制的分子机制在很大程度上仍未明确。方法:取AR患者外周血和鼻黏膜标本(n = 22)及卵清蛋白诱导AR小鼠模型(每组8只)进行后续检测。采用qRT-PCR和western blot检测LINC00240、miR-155-5p、PU.1等关键分子的表达。采用ELISA法和流式细胞术分别测定各组白细胞介素9 (IL-9)和辅助性t -9 (Th9)的分泌比例。采用生物信息学分析、RNA免疫沉淀法(RIP)、染色质免疫沉淀法(ChIP)和荧光素酶报告基因法进一步阐明LINC00240/miR-155-5p/DNMT1的调控网络。采用甲基化特异性PCR (methyl- specific PCR, MSP)检测PU.1启动子的甲基化程度。在AR小鼠模型中进一步验证了这一信号轴。结果:在AR患者和AR小鼠的外周血和鼻黏膜中,LINC00240下调,miR-155-5p和PU.1上调。这伴随着Th9细胞比例的增加和IL-9分泌的增加。在机制上,LINC00240作为miR-155-5p海绵,DNMT1是miR-155-5p的靶标。此外,DNMT1介导了PU.1启动子的甲基化。体内研究证实,LINC00240可能通过miR-155-5p/DNMT1/PU减缓AR进展。依赖于Th9的分化。结论:LINC00240通过海绵化miR-155-5p调节dnmt1依赖性的PU.1甲基化,参与AR发病与Th9分化密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Role of LINC00240 on T-helper 9 differentiation in allergic rhinitis through influencing DNMT1-dependent methylation of PU.1.

Role of LINC00240 on T-helper 9 differentiation in allergic rhinitis through influencing DNMT1-dependent methylation of PU.1.

Background: Allergic rhinitis (AR) is a common allergic disease with increasing prevalence globally. However, the molecular mechanism underlying AR pathogenesis remains largely undefined.

Methods: Peripheral blood and nasal mucosa samples obtained from patients with AR (n = 22), and ovalbumin-induced AR mouse model (n = 8 per group) were prepared for subsequent detection. qRT-PCR and western blot were used to detect the expression of LINC00240, miR-155-5p, PU.1 and other key molecules. ELISA assay and flow cytometry were employed to evaluate the secretion of IL-9 and T-helper 9 (Th9) cell ratio, respectively. Bioinformatics analysis, RNA immunoprecipitation (RIP), chromatin immunoprecipitation (ChIP) and luciferase reporter assays were employed to further elucidate the regulatory network of LINC00240/miR-155-5p/DNMT1. The methylation of PU.1 promoter was assessed by methylation-specific PCR (MSP). This signaling axis was further validated in the mouse model of AR.

Results: LINC00240 was downregulated, while miR-155-5p and PU.1 were upregulated in the peripheral blood and nasal mucosa of AR patients, as well as in AR mice. This was accompanied with the increased ratio of Th9 cells and elevated IL-9 secretion. Mechanistically, LINC00240 served as a miR-155-5p sponge, and DNMT1 was a target of miR-155-5p. In addition, DNMT1 mediated the methylation of PU.1 promoter. In vivo studies verified that LINC00240 mitigated AR progression, possibly via miR-155-5p/DNMT1/PU.1-dependent Th9 differentiation.

Conclusion: The involvement of LINC00240 in AR pathogenesis is closely associated with Th9 differentiation through modulating DNMT1-dependent methylation of PU.1 by sponging miR-155-5p.

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