不同表达的 tRNA 衍生片段在高糖诱导的荚膜细胞中的潜在作用。

IF 3 3区 医学 Q1 UROLOGY & NEPHROLOGY Renal Failure Pub Date : 2024-12-01 Epub Date: 2024-02-18 DOI:10.1080/0886022X.2024.2318413
Zhenxing Zhang, Yunyang Qiao, Jialing Ji, Chan Huang, Huimin Shi, Weihua Gan, Aiqing Zhang
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引用次数: 0

摘要

糖尿病肾病(DKD)的发病率逐年上升。源于 tRNA 前体或成熟 tRNA 的 tRNA 衍生片段(tRFs)与多种疾病相关。本研究鉴定了tRFs,并探讨了它们在高葡萄糖(HG)治疗诱导的荚膜损伤中的作用。研究人员对经 HG 处理的荚膜细胞进行了高通量测序,以鉴定差异表达的 tRFs。对基因本体(GO)和京都基因组百科全书(KEGG)进行了分析。在过表达 tRF-1:24-Glu-CTC-1-M2(tRF-1:24)并同时进行 HG 处理后,测定了荚膜细胞中肾素、荚膜蛋白和 desmin 的表达水平。共鉴定出 647 个 tRFs,在 HG 组中鉴定出 89 个差异表达的 tRFs(|log2FC| ≥ 0.585; p ≤ .05),其中 53 个 tRFs 下调,36 个 tRFs 上调。通过实时定量聚合酶链反应(RT-qPCR)检测到了差异表达最高的 10 个 tRFs,这些结果与测序结果一致。GO分析显示,tRFs富集最多的生物过程、细胞成分和分子功能术语是细胞过程、细胞解剖实体和结合。KEGG通路分析显示,tRFs可能参与了与生长激素、磷脂酶D、干细胞多能性调控和T/B细胞受体有关的信号通路。tRF-1:24是表达差异最大的tRF之一,它的过表达减轻了HG对荚膜细胞的损伤。因此,tRFs可能是DKD中荚膜细胞损伤的潜在生物标志物。
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The potential role of differentially expressed tRNA-derived fragments in high glucose-induced podocytes.

The prevalence of diabetic kidney disease (DKD) is increasing annually. Damage to and loss of podocytes occur early in DKD. tRNA-derived fragments (tRFs), originating from tRNA precursors or mature tRNAs, are associated with various illnesses. In this study, tRFs were identified, and their roles in podocyte injury induced by high-glucose (HG) treatment were explored. High-throughput sequencing of podocytes treated with HG was performed to identify differentially expressed tRFs. Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) analyses were performed. The expression levels of nephrin, podocin, and desmin were measured in podocytes after overexpression of tRF-1:24-Glu-CTC-1-M2 (tRF-1:24) and concomitant HG treatment. A total of 647 tRFs were identified, and 89 differentially expressed tRFs (|log2FC| ≥ 0.585; p ≤ .05) were identified in the HG group, of which 53 tRFs were downregulated and 36 tRFs were upregulated. The 10 tRFs with the highest differential expression were detected by real-time quantitative polymerase chain reaction (RT-qPCR), and these results were consistent with the sequencing results. GO analysis revealed that the biological process, cellular component, and molecular function terms in which the tRFs were the most enriched were cellular processes, cellular anatomical entities, and binding. KEGG pathway analysis revealed that tRFs may be involved in signaling pathways related to growth hormones, phospholipase D, the regulation of stem cell pluripotency, and T-/B-cell receptors. Overexpression of tRF-1:24, one of the most differentially expressed tRFs, attenuated podocyte injury induced by HG. Thus, tRFs might be potential biomarkers for podocyte injury in DKD.

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来源期刊
Renal Failure
Renal Failure 医学-泌尿学与肾脏学
CiteScore
3.90
自引率
13.30%
发文量
374
审稿时长
1 months
期刊介绍: Renal Failure primarily concentrates on acute renal injury and its consequence, but also addresses advances in the fields of chronic renal failure, hypertension, and renal transplantation. Bringing together both clinical and experimental aspects of renal failure, this publication presents timely, practical information on pathology and pathophysiology of acute renal failure; nephrotoxicity of drugs and other substances; prevention, treatment, and therapy of renal failure; renal failure in association with transplantation, hypertension, and diabetes mellitus.
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