IGF1R Enhances Calcium Oxalate Monohydrate-Induced Epithelial-Mesenchymal Transition by Reprogramming Metabolism via the JAK2/STAT3 Signaling.

IF 10 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY International Journal of Biological Sciences Pub Date : 2025-01-01 DOI:10.7150/ijbs.104311
Jiashan Pan, Yi Zhang, Rui Yao, Mo Yang, Xike Mao, Zhenyu Song, Yuexian Xu, Yang Chen, Bingbing Hou, Xiaoying Liu, Wei Wang, Zongyao Hao
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Abstract

Background: Kidney stone disease is a major risk factor for impaired renal function, leading to renal fibrosis and end-stage renal disease. High global prevalence and recurrence rate pose a significant threat to human health and healthcare resources. Investigating the mechanisms of kidney stone-induced injury is crucial. Materials and Methods: We examined the relationship between insulin-like growth factor 1 receptor (IGF1R) and epithelial-mesenchymal transition (EMT) at three levels: in patients with kidney stones, in mice induced with glyoxalate crystals, and in HK2 cells stimulated with calcium oxalate monohydrate (COM). RNA sequencing (RNA-seq) and untargeted metabolomics were used to investigate IGF1R's biological mechanisms, followed by in vivo validation in mice. Results: IGF1R was elevated in the kidney stone model, which was significantly associated with EMT progression. RNA-seq analysis indicated that IGF1R enhances EMT through the JAK2/STAT3 pathway. Further experiments at mRNA and protein levels confirmed the activation of this pathway regulated by IGF1R, promoting EMT. Additionally, untargeted metabolomics revealed that IGF1R drives the activation of lactate dehydrogenase A (LDHA) in glycolysis, further facilitating EMT. In vivo experiments confirmed that IGF1R increases LDHA activity through the activation of the JAK2/STAT3 pathway, thereby enhancing the EMT. Conclusion: IGF1R promotes EMT in COM-induced kidney injury by activating LDHA via the JAK2/STAT3 signaling.

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IGF1R通过JAK2/STAT3信号重编程代谢增强草酸钙诱导的上皮-间质转化
背景:肾结石疾病是肾功能受损的主要危险因素,可导致肾纤维化和终末期肾病。全球高流行率和复发率对人类健康和保健资源构成重大威胁。研究肾结石引起的损伤机制至关重要。材料和方法:研究了胰岛素样生长因子1受体(IGF1R)与肾结石患者、乙醛酸盐晶体诱导小鼠和一水草酸钙(COM)刺激HK2细胞三个水平上皮-间质转化(EMT)之间的关系。利用RNA测序(RNA-seq)和非靶向代谢组学研究IGF1R的生物学机制,随后在小鼠体内进行验证。结果:肾结石模型中IGF1R升高,与EMT进展显著相关。RNA-seq分析表明,IGF1R通过JAK2/STAT3途径增强EMT。进一步的mRNA和蛋白水平实验证实了IGF1R调控的这一通路的激活,促进了EMT的发生。此外,非靶向代谢组学显示,IGF1R驱动糖酵解中乳酸脱氢酶A (LDHA)的激活,进一步促进EMT。体内实验证实IGF1R通过激活JAK2/STAT3通路增加LDHA活性,从而增强EMT。结论:IGF1R通过JAK2/STAT3信号通路激活LDHA,促进com诱导肾损伤的EMT。
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来源期刊
International Journal of Biological Sciences
International Journal of Biological Sciences 生物-生化与分子生物学
CiteScore
16.90
自引率
1.10%
发文量
413
审稿时长
1 months
期刊介绍: The International Journal of Biological Sciences is a peer-reviewed, open-access scientific journal published by Ivyspring International Publisher. It dedicates itself to publishing original articles, reviews, and short research communications across all domains of biological sciences.
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