MicroRNA-204-5p通过靶向TXNIP减轻糖尿病性白内障患者的氧化应激、细胞凋亡和炎症反应

IF 2.1 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY
Xiang Cao, Zhixin Jiang, Xiaofei Bu, Qingyu Li, Ye Tian, Zijiao Xu, Boyang Zhang, Xiaoyong Yuan
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引用次数: 0

摘要

糖尿病性白内障(DC)是糖尿病患者失明的主要原因,其特点是发病早、进展快。以前曾发现 MiR-204-5p 是人类白内障晶状体组织中五大下调 miRNA 之一。我们的目的是测定 miR-204-5p 在人类晶状体上皮细胞(HLECs)中的表达,并探讨其在调控 DC 进展中的作用和机制。我们通过 RT-qPCR 检测了 miR-204-5p 在 DC 患者前囊和 HLECs 中的表达。然后利用生物信息学工具确定了 miR-204-5p 的潜在靶点。通过双荧光素酶报告实验证实了 miR-204-5p 与靶基因之间的关系。此外,通过使用 miR-204-5p agomir 过表达 miR-204-5p,研究了 DC 中氧化应激、细胞凋亡和炎症的调控机制。在 DC 患者和 HLECs 的前囊中,miR-204-5p 的表达下调。过表达 miR-204-5p 能降低 ROS 水平、促凋亡基因(Bid、Bax、caspase-3)和经 HG 处理的 HLECs 中 IL-1β 的产生。通过双荧光素酶报告实验,TXNIP 是 miR-204-5p 的直接靶标。因此,本研究表明,miR-204-5p 通过靶向 TXNIP 有效地减少了 HG 条件下 HLECs 的氧化损伤、细胞凋亡和炎症反应。以miR-204-5p为靶点可能是治疗DC的一种有前景的治疗策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MicroRNA-204-5p Attenuates Oxidative Stress, Apoptosis and Inflammation by Targeting TXNIP in Diabetic Cataract.

MicroRNA-204-5p Attenuates Oxidative Stress, Apoptosis and Inflammation by Targeting TXNIP in Diabetic Cataract.

Diabetic cataract (DC) is a major cause of blindness in diabetic patients and it is characterized by early onset and rapid progression. MiR-204-5p was previously identified as one of the top five down-regulated miRNAs in human DC lens tissues. We aimed to determine the expression of miR-204-5p in human lens epithelial cells (HLECs) and explore its effects and mechanisms in regulating the progression of DC. The expression of miR-204-5p in the anterior capsules of DC patients and HLECs was examined by RT-qPCR. Bioinformatics tools were then used to identify the potential target of miR-204-5p. The relationship between miR-204-5p and the target gene was confirmed through a dual luciferase reporter assay. Additionally, the regulatory mechanism of oxidative stress, apoptosis, and inflammation in DC was investigated by overexpressing miR-204-5p using miR-204-5p agomir. The expression of miR-204-5p was downregulated in the anterior capsules of DC patients and HLECs. Overexpression of miR-204-5p reduced ROS levels, pro-apoptosis genes (Bid, Bax, caspase-3), and IL-1β production in HG-treated HLECs. TXNIP was the direct target of miR-204-5p by dual luciferase reporter assay. Therefore, this study demonstrated that miR-204-5p effectively reduced oxidative damage, apoptosis, and inflammation in HLECs under HG conditions by targeting TXNIP. Targeting miR-204-5p could be a promising therapeutic strategy for the potential treatment of DC.

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来源期刊
Biochemical Genetics
Biochemical Genetics 生物-生化与分子生物学
CiteScore
3.90
自引率
0.00%
发文量
133
审稿时长
4.8 months
期刊介绍: Biochemical Genetics welcomes original manuscripts that address and test clear scientific hypotheses, are directed to a broad scientific audience, and clearly contribute to the advancement of the field through the use of sound sampling or experimental design, reliable analytical methodologies and robust statistical analyses. Although studies focusing on particular regions and target organisms are welcome, it is not the journal’s goal to publish essentially descriptive studies that provide results with narrow applicability, or are based on very small samples or pseudoreplication. Rather, Biochemical Genetics welcomes review articles that go beyond summarizing previous publications and create added value through the systematic analysis and critique of the current state of knowledge or by conducting meta-analyses. Methodological articles are also within the scope of Biological Genetics, particularly when new laboratory techniques or computational approaches are fully described and thoroughly compared with the existing benchmark methods. Biochemical Genetics welcomes articles on the following topics: Genomics; Proteomics; Population genetics; Phylogenetics; Metagenomics; Microbial genetics; Genetics and evolution of wild and cultivated plants; Animal genetics and evolution; Human genetics and evolution; Genetic disorders; Genetic markers of diseases; Gene technology and therapy; Experimental and analytical methods; Statistical and computational methods.
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