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核黄素缺乏诱导 HepG2 细胞蛋白质组图谱发生显著变化。

Riboflavin deficiency induces a significant change in proteomic profiles in HepG2 cells.

机构信息

Institute of Health and Environmental Medicine, Tianjin, 300050, China.

School of Public Health, Guangxi Medical University, Nanning, 530021, China.

出版信息

Sci Rep. 2017 Apr 3;7:45861. doi: 10.1038/srep45861.

Abstract

Riboflavin deficiency is widespread in many regions over the world, especially in underdeveloped countries. In this study, we investigated the effects of riboflavin deficiency on protein expression profiles in HepG2 cells in order to provide molecular information for the abnormalities induced by riboflavin deficiency. HepG2 cells were cultured in media containing different concentrations of riboflavin. Changes of cell viability and apoptosis were assessed. A comparative proteomic analysis was performed using a label-free shotgun method with LC-MS/MS to investigate the global changes of proteomic profiles in response to riboflavin deficiency. Immunoblotting test was used to validate the results of proteomic approach. The cell viability and apoptosis tests showed that riboflavin was vital in maintaining the cytoactivity of HepG2 cells. The label-free proteomic analysis revealed that a total of 37 proteins showing differential expression (±2 fold, p < 0.05) were identified after riboflavin deficiency. Bioinformatics analysis indicated that the riboflavin deficiency caused an up-regulation of Parkinson's disease pathway, steroid catabolism, endoplasmic reticulum stress and apoptotic process, while the fatty acid metabolism, tricarboxylic citrate cycle, oxidative phosphorylation and iron metabolism were down-regulated. These findings provide a molecular basis for the elucidation of the effects caused by riboflavin deficiency.

摘要

核黄素缺乏症在世界上许多地区都很普遍,尤其是在欠发达国家。在这项研究中,我们研究了核黄素缺乏对 HepG2 细胞蛋白质表达谱的影响,以便为核黄素缺乏引起的异常提供分子信息。将 HepG2 细胞在含有不同浓度核黄素的培养基中培养。评估细胞活力和细胞凋亡的变化。使用 LC-MS/MS 进行无标记的鸟枪法比较蛋白质组学分析,以研究蛋白质组谱对核黄素缺乏的全局变化。免疫印迹试验用于验证蛋白质组学方法的结果。细胞活力和细胞凋亡试验表明,核黄素对于维持 HepG2 细胞的细胞活力是至关重要的。无标记蛋白质组学分析显示,核黄素缺乏后共鉴定出 37 种差异表达的蛋白质(±2 倍,p<0.05)。生物信息学分析表明,核黄素缺乏导致帕金森病途径、类固醇分解代谢、内质网应激和凋亡过程上调,而脂肪酸代谢、三羧酸柠檬酸循环、氧化磷酸化和铁代谢下调。这些发现为阐明核黄素缺乏引起的影响提供了分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2797/5377456/b849a13816bd/srep45861-f1.jpg

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