首页|期刊导航|浙江大学学报(医学版)|WD40重复结构域蛋白6影响肾脏脂质代谢促进糖尿病肾病进展

WD40重复结构域蛋白6影响肾脏脂质代谢促进糖尿病肾病进展OA

WD40 repeat-containing protein 6 aggravates diabetic kidney disease by promoting lipid accumulation in kidney

中文摘要英文摘要

目的:探讨WD40重复结构域蛋白6(WDR6)调控肾脏脂质代谢参与糖尿病肾病(DKD)进展的作用及机制.方法:选取2015-2023年于临沂市人民医院行肾活检的97例患者,分为非DKD组(38例)、DKD-Ⅱ组(24例)和DKD-Ⅲ组(35例).收集患者血常规、肝功能、肾功能、糖代谢和脂质代谢相关分子等临床指标;通过肾穿刺病理结果评估肾组织损伤程度;采用免疫组织化学染色检测肾组织WDR6及脂肪分化相关蛋白(ADRP)的表达.利用高糖刺激人肾小管上皮(HK-2)细胞,通过油红O染色观察细胞脂质沉积情况,运用蛋白质印迹法和定量逆转录聚合酶链反应检测WDR6和脂质代谢相关分子表达,并观察转染小干扰RNA沉默WDR6对上述指标的影响.结果:与非DKD组比较,DKD-Ⅱ组和DKD-Ⅲ组肾功能和脂质代谢相关指标显著异常,且肾组织出现不同程度损伤.WDR6在人肾脏组织中表达,且DKD组肾组织中WDR6及ADRP表达均增加(均P<0.01).高糖刺激HK-2细胞48 h后脂质沉积明显,且WDR6、ADRP、固醇调节元件结合蛋白1、脂肪酸合成酶等蛋白及其信使RNA表达较空白对照组均升高(均P<0.01).沉默WDR6基因后,高糖诱导的脂质沉积减少,脂质代谢相关分子表达均降低(均P<0.05).结论:WDR6水平升高可影响肾脏脂质代谢,从而加速DKD病理进展.

Objective:To investigate the role and mechanism of WD40 repeat-containing protein 6(WDR6)in the regulation of renal lipid metabolism and its involvement in the progression of diabetic kidney disease(DKD).Methods:A total of 97 patients who underwent renal biopsy in Linyi People's Hospital between 2015 and 2023 were enrolled.Based on pathological diagnoses,the patients were divided into three groups:non-DKD(n=38),DKD stage Ⅱ(n=24),and DKD stage Ⅲ(n=35).Clinical indicators,including complete blood count,liver and kidney function tests,and markers of glucose and lipid metabolism,were assessed.Renal tissue damage was evaluated by renal biopsy pathology.Immunohistochemistry was used to detect the expressions of WDR6 and adipose differentiation-related protein(ADRP).Human renal tubular epithelial(HK-2)cells were stimulated with high glucose,and lipid deposition was observed by oil red O staining.Protein and mRNA levels of lipid metabolism-related molecules were measured by Western blotting and qRT-PCR.Additionally,the effect of small interfering RNA-mediated WDR6 silencing on the above indicators was examined.Results:Compared with the non-DKD group,DKD stage Ⅱ and DKD stage Ⅲ groups exhibited significant abnormalities in renal function-and lipid metabolism-related parameters,along with varying degrees of renal tissue injury.WDR6 was expressed in human kidney,and its expression together with ADRP was elevated in the DKD groups(both P<0.01).After 48 hours of high-glucose stimulation,HK-2 cells exhibited prominent lipid deposition,accompanied by increased protein and mRNA levels of WDR6,ADRP,sterol regulatory element-binding protein 1(SREBP1),and fatty acid synthase compared with the blank control group(all P<0.01).Silencing WDR6 reduced high glucose-induced lipid deposition and the expression of these lipid metabolism-related molecules(all P<0.05).Conclusion:Elevated WDR6 levels may affect renal lipid metabolism,thereby accelerating the pathological progression of DKD.

辛培青;孙丽娜;牛少娜;孙雪

山东第二医科大学临床医学院,山东 潍坊 261000临沂市人民医院肾内科,山东 临沂 276000临沂市人民医院内分泌代谢病科,山东 临沂 276000临沂市人民医院病理科,山东 临沂 276000

医药卫生

糖尿病肾脏病WD40重复结构域蛋白6脂质代谢人肾小管上皮细胞

Diabetic kidney diseaseWD40 repeat-containing protein 6Lipid metabolismHuman renal tubular epithelial cells

《浙江大学学报(医学版)》 2026 (5)

465-474,10

山东第二医科大学附属医院科研发展基金(2025FYM053)This study was supported by Shandong Second Medical University Affiliated Hospital Scientific Research Development Fund(2025FYM053)

10.3724/zdxbyxb-2025-0666

评论