Wang Xiaoxia, Shen E, Wang Yanzhe, Jiang Zhenzhen, Gui Dingkun, Cheng Dongsheng, Chen Tingfang, Wang Niansong
Department of Nephrology, Tong Ren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, P. R. China.
Department of Ultrasound in Medicine, Tong Ren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, P. R. China.
J Lab Autom. 2015 Aug;20(4):491-9. doi: 10.1177/2211068215569055. Epub 2015 Feb 5.
Glomerular mesangial cell (MC) hypertrophy is regarded as one of the earliest pathological characteristics of diabetic nephropathy (DN), which plays a critical role in the pathogenesis of glomerulosclerosis. This study investigated the role of microRNAs (miRNAs) in MC hypertrophy due to exposure to high glucose. With a microarray, we screened the differential profiles of miRNAs in the renal cortex of DN mice, as verified by reverse transcription PCR with subsequent analysis of bioinformatics. We found miR-196a was downregulated remarkably in DN mice and increased the hypertrophy-related gene of p27(kip1) in high-enrichment gene ontologies. Furthermore, transfection of the miR-196a mimic greatly inhibited the expression of p27(kip1) with recovery of MC hypertrophic morphology. With flow cytometry, we also found that overexpression of miR-196a significantly reduced the percentage of G1 phase arrest in the cell cycle. Cotransfection of the miR-196a mimic with a wild type of 3' UTR of the p27(kip1) vector reduced the activity of the luciferase reporter significantly in contrast to the miR-196a mimic with a mutant of the counterpart in HEK293 cell lines, suggesting that miR-196a directly targets p27(kip1). Finally, knockdown of p27(kip1) with specific small interfering RNA in MCs substantially reversed MC hypertrophy induced by transfection of the miR-196a inhibitor. This study revealed that miR-196a acts as an important molecular regulator in high glucose-induced MC hypertrophy by targeting p27(kip1).
肾小球系膜细胞(MC)肥大被认为是糖尿病肾病(DN)最早出现的病理特征之一,在肾小球硬化的发病机制中起关键作用。本研究探讨了微小RNA(miRNA)在高糖诱导的MC肥大中的作用。通过微阵列,我们筛选了DN小鼠肾皮质中miRNA的差异谱,并通过逆转录PCR及后续生物信息学分析进行验证。我们发现miR-196a在DN小鼠中显著下调,并且在高富集基因本体中增加了与肥大相关的基因p27(kip1)。此外,转染miR-196a模拟物可显著抑制p27(kip1)的表达,并使MC肥大形态恢复。通过流式细胞术,我们还发现miR-196a的过表达显著降低了细胞周期中G1期停滞的百分比。在HEK293细胞系中,与miR-196a模拟物与p27(kip1)载体3'UTR突变体共转染相比,miR-196a模拟物与野生型p27(kip1)载体3'UTR共转染显著降低了荧光素酶报告基因的活性,表明miR-196a直接靶向p27(kip1)。最后,在MC中用特异性小干扰RNA敲低p27(kip1)可显著逆转miR-196a抑制剂转染诱导的MC肥大。本研究表明,miR-196a通过靶向p27(kip1)在高糖诱导的MC肥大中起重要的分子调节作用。