机构:[1]Department of Nephrology, First Medical Center of Chinese PLA General Hospital, Nephrology Institute of the Chinese People's Liberation Army, State Key Laboratory of Kidney Diseases, National Clinical Research Center for Kidney Diseases, Beijing Key Laboratory of Kidney Disease Research, Beijing 100853, China.[2]Beijing Tongren Eye Center, Beijing Tongren Hospital, Capital Medical University, Beijing 100730, China.首都医科大学附属北京同仁医院首都医科大学附属同仁医院[3]Department of Ophthalmology, Chinese PLA General Hospital, Beijing 100853, China.[4]Nankai University School of Medicine, 94 Weijin Road, Tianjin, 300071, China.
Background: Acute kidney injury (AKI) is associated with damage to the nephrons and tubular epithelial cells (TECs), which can lead to chronic kidney disease and end-stage renal disease. Identifying new biomarkers before kidney dysfunction will offer crucial insight into preventive and therapeutic options for the treatment of AKI. Early growth response 1 (EGR1) has been found to be a pioneer transcription factor that can sequentially turn on/off key downstream genes to regulate whole-body regeneration processes in the leopard worm. Whether EGR1 modulates renal regeneration processes in AKI remains to be elucidated. Methods: AKI models of ischemia-reperfusion injury (IRI) and folic acid (FA) were developed to investigate the roles of EGR1 in kidney injury and regeneration. To further determine the function of EGR1, Egr1(-/-) mice were applied. Furthermore, RNA sequencing of renal TECs, Chromatin Immunoprecipitation (ChIP) assay, and Dual-luciferase reporter assay were carried out to investigate whether EGR1 affects the expression of SOX9. Results: EGR1 is highly expressed in the kidney after AKI both in humans and mice through analysis of the Gene Expression Omnibus (GEO) database. Furthermore, we verified that EGR1 rapidly up-regulates in the very early stage of IRI and nephrotoxic models of AKI, and validation studies confirmed the essential roles of EGR1 in renal tubular cell regeneration. Further experiments affirmed that genetic inhibition of Egr1 aggravates the severity of AKI in mouse models. Furthermore, our results revealed that EGR1 could increase SOX9 expression in renal TECs by directly binding to the promoter of the Sox9 gene, thus promoting SOX9(+) cell proliferation by activating the Wnt/beta-catenin pathway. Conclusions: Together, our results demonstrated that rapid and transient induction of EGR1 plays a renoprotective role in AKI, which highlights the prospects of using EGR1 as a potential therapeutic target for the treatment of AKI.
基金:
National Natural Science Foundation of China [82000631, 82100713, 82030025, 32000530, 81770664, 81830060]; China Postdoctoral Science Foundation [2021T140791]; National Key Research and Development Program of China [2017YFA0103200, 2017YFA0103203]; National Sciences Foundation of Beijing [7222169]; Fund of Chinese PLA 13th Five Year Plan for Medical Sciences [BLB19J009]; Military Medical Youth Special Project of PLA General Hospital [QNF19035]; Young Elite Scientist Sponsorship Program by CAST [YESS20200400]
第一作者机构:[1]Department of Nephrology, First Medical Center of Chinese PLA General Hospital, Nephrology Institute of the Chinese People's Liberation Army, State Key Laboratory of Kidney Diseases, National Clinical Research Center for Kidney Diseases, Beijing Key Laboratory of Kidney Disease Research, Beijing 100853, China.
共同第一作者:
通讯作者:
通讯机构:[1]Department of Nephrology, First Medical Center of Chinese PLA General Hospital, Nephrology Institute of the Chinese People's Liberation Army, State Key Laboratory of Kidney Diseases, National Clinical Research Center for Kidney Diseases, Beijing Key Laboratory of Kidney Disease Research, Beijing 100853, China.[4]Nankai University School of Medicine, 94 Weijin Road, Tianjin, 300071, China.[*1]State Key Laboratory of Kidney Diseases, Chinese PLA General Hospital, 28 Fuxin Road, Beijing 100853, China,[*2]Nankai University School of Medicine, 94 Weijin Road, Tianjin 300071, China[*3]State Key Laboratory of Kidney Diseases, Chinese PLA General Hospital, 28 Fuxin Road, Beijing 100853, China
推荐引用方式(GB/T 7714):
Chen Jian-Wen,Huang Meng-Jie,Chen Xiao-Niao,et al.Transient upregulation of EGR1 signaling enhances kidney repair by activating SOX9+ renal tubular cells[J].THERANOSTICS.2022,12(12):5434-5450.doi:10.7150/thno.73426.
APA:
Chen, Jian-Wen,Huang, Meng-Jie,Chen, Xiao-Niao,Wu, Ling-Ling,Li, Qing-Gang...&Chen, Xiang-Mei.(2022).Transient upregulation of EGR1 signaling enhances kidney repair by activating SOX9+ renal tubular cells.THERANOSTICS,12,(12)
MLA:
Chen, Jian-Wen,et al."Transient upregulation of EGR1 signaling enhances kidney repair by activating SOX9+ renal tubular cells".THERANOSTICS 12..12(2022):5434-5450