tRF-AsnGTT-33减轻阿霉素肾病小鼠足细胞损伤的机制研究
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南京医科大学第二附属医院儿肾科,江苏 南京 210003

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R329

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国家自然科学基金(82400864);南京市卫生科技发展专项(YKK23288,YKK23289)


Mechanism of podocyte injury attenuation by tRF-AsnGTT-33 in adriamycin-induced in nephropathy mice
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Department of Pediatric Nephrology, the Second Affiliated Hospital of Nanjing Medical University, Nanjing 210003 , China

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    摘要:

    目的:探讨tRNA衍生片段AsnGTT-33(tRNA-derived fragment AsnGTT-33,tRF-AsnGTT-33)在阿霉素(adriamycin,ADR)肾病小鼠足细胞损伤中的作用和机制。方法:尾静脉一次性注入ADR(10 mg/kg),构建ADR肾病小鼠模型,尾静脉注射tRF-AsnGTT-33腺相关病毒(adeno-associated virus,AAV)0.5 mL/只实现体内过表达,采用肌氨酸氧化酶法检测小鼠血清肌酐(serum creatinine,Scr)、脲酶法检测血尿素氮(blood urea nitrogen,BUN)、苏木精和伊红染色(hematoxylin and eosin staining,HE)和过碘酸-雪芙染色(periodic acid-schiff stain,PAS)观察肾小球及肾小管损伤程度,并通过qPCR和Western blot分析足细胞标志物Nephrin和Podocin的表达变化。体外以1 mg/L ADR诱导足细胞损伤,转染tRF-AsnGTT-33 mimic后,通过qPCR和Western blot检测细胞内nephrin和podocin表达变化。基于miRDB数据库预测RAB21为靶基因,检测足细胞及小鼠肾脏组织中tRF-AsnGTT-33过表达对RAB21表达的影响。结果:ADR肾病小鼠肾组织tRF-AsnGTT-33表达显著下调,伴随Scr、BUN升高,nephrin和podocin表达降低,肾脏病理损伤加重,如肾小球基底膜增厚、肾小管内可见蛋白管型、间质纤维化等;tRF-AsnGTT-33过表达可显著降低Scr及BUN水平,减轻病理损伤,上调Nephrin和Podocin的表达。ADR诱导的足细胞中tRF-AsnGTT-33表达下调,且Nephrin和Podocin表达下降,tRF-AsnGTT-33过表达后Nephrin和Podocin表达升高。tRF-AsnGTT-33过表达后足细胞及小鼠肾脏组织中RAB21表达均显著下调。结论:tRF-AsnGTT-33可能通过靶向调控RAB21减轻ADR诱导的足细胞损伤,为寻找慢性肾脏病治疗靶点提供理论依据。

    Abstract:

    Objective: To investigate the role and mechanism of the tRNA-derived fragment AsnGTT-33 (tRF-AsnGTT-33) in podocyte injury within a murine model of adriamycin(ADR)-induced nephropathy. Methods: An ADR nephropathy mouse model was established via a single tail vein injection of ADR(10 mg/kg). tRF-AsnGTT-33 adeno-associated virus(AAV)(0.5 mL per mouse)was administered via tail vein to achieve in vivo overexpression. Renal function was assessed by measuring serum creatinine (Scr) levels using the sarcosine oxidase method and blood urea nitrogen (BUN) levels using the urease method. Renal pathological injury was evaluated by hematoxylin and eosin staining(HE) and periodic acid-schiff staining(PAS) to observe glomerular and tubular damage. The mRNA and protein expression levels of the podocyte markers nephrin and podocin were analyzed by quantitative PCR(qPCR)and Western blot, respectively. In vitro, podocyte injury was induced by 1 mg/L ADR. Following transfection with a tRF-AsnGTT-33 mimic, the expression levels of nephrin and podocin were detected by qPCR and Western blot. The miRDB database was used to predict Ras-related protein RAB21 as a potential target gene. The effect of tRF-AsnGTT-33 overexpression on RAB21 expression was subsequently examined in both cultured podocytes and mouse renal tissues. Results: Renal tissues from ADR nephropathy mice exhibited significantly downregulated tRF-AsnGTT-33 expression,accompanied by markedly elevated Scr and BUN levels, reduced expression of nephrin and podocin, and aggravated renal pathological injury, including thickening of the glomerular basement membrane, intratubular protein casts, and interstitial fibrosis. Overexpression of tRF-AsnGTT-33 significantly lowered Scr and BUN levels, alleviated pathological damage, and upregulated the expression of nephrin and podocin. In ADR-induced podocytes, tRF-AsnGTT-33 expression was decreased, along with reduced nephrin and podocin expression; these effects were reversed by tRF-AsnGTT-33 overexpression. Furthermore, tRF-AsnGTT-33 overexpression led to a significant downregulation of RAB21 expression in both podocytes and mouse renal tissues. Conclusion: tRF-AsnGTT-33 may alleviate ADR-induced podocyte injury by targeting RAB21, providing a theoretical foundation for identifying novel therapeutic targets for chronic kidney disease.

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徐明星,黄婵,宁蓓蓓,施会敏,甘卫华. tRF-AsnGTT-33减轻阿霉素肾病小鼠足细胞损伤的机制研究[J].南京医科大学学报(自然科学版),2026,46(5):664-672

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  • 收稿日期:2025-06-20
  • 最后修改日期:2025-11-14
  • 录用日期:2025-12-17
  • 在线发布日期: 2026-05-18
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