Literature DB >> 29215709

The potential role of aquaporin 1 on aristolochic acid I induced epithelial mesenchymal transition on HK-2 cells.

Ji Li1, Mincheng Zhang1,2, Yong Mao1, Yimao Li1, Xiaoxia Zhang1, Xuehan Peng1, Feng Yu1.   

Abstract

Aristolochic acid I (AA-I), one of the main active components in Aristolochaia herbs, may induce aristolochic acid nephropathy (AAN). Renal interstitial fibrosis is one of the most typical features of AAN. To investigate the mechanism of Aristolochic acid I (AA-I) -induced renal epithelial-mesenchymal transition (EMT) and determine the role of aquaporin-1 (AQP1) in this process, we established an AA-I-induced EMT model in human proximal tubular epithelial cells (HK-2 cells). Morphological examination, MTT assay, and Western blot analysis were performed. Aquaporin 1 (AQP1) and several EMT-related proteins were detected, thereby suggesting the occurrence of AA-I-induced EMT. Two main pathways of transforming growth factor-β (TGF-β) signaling, namely, Smad-dependent and Smad-independent signaling pathways, were also detected. The results showed that the TGF-β / Smad-independent signaling pathways (β-catenin, Ras-Raf-Erk1/2 signaling pathways) were activated, and AQP1 expression was decreased during the AA-I induced EMT on HK-2 cells. With the presence of TGF-β1 receptor inhibitor (LY364947) and Erk1/2 inhibitor (PD98059), AQP1 expression was altered by PD98059, suggested that AQP1 could be adjusted by Erk1/2 signaling. Moreover, the inhibitory effect of AA-I on AQP1 was stronger than that of TGF-β1, suggested that AQP1 may be an important target on AAN clinical therapy.
© 2017 Wiley Periodicals, Inc.

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Keywords:  TGF-β; TGF-β1 signaling pathways; aquaporin-1; aristolochic acid I; epithelial-mesenchymal transition

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Year:  2018        PMID: 29215709     DOI: 10.1002/jcp.26310

Source DB:  PubMed          Journal:  J Cell Physiol        ISSN: 0021-9541            Impact factor:   6.384


  6 in total

1.  Cytoprotective effect of aquaporin 1 against lipopolysaccharide-induced apoptosis and inflammation of renal epithelial HK-2 cells.

Authors:  Yiduo Wang; Wenzheng Zhang; Guangzhe Yu; Qian Liu; Yingyu Jin
Journal:  Exp Ther Med       Date:  2018-03-22       Impact factor: 2.447

2.  JAM-A knockdown accelerates the proliferation and migration of human keratinocytes, and improves wound healing in rats via FAK/Erk signaling.

Authors:  Yunchuan Wang; Jianping Zheng; Yue Han; Yijie Zhang; Linlin Su; Dahai Hu; Xiaobing Fu
Journal:  Cell Death Dis       Date:  2018-08-28       Impact factor: 8.469

3.  AQP1 suppression by ATF4 triggers trabecular meshwork tissue remodelling in ET-1-induced POAG.

Authors:  Yingying Zhao; Huazhang Zhu; Yangfan Yang; Yiming Ye; Youli Yao; Xiaoyan Huang; Yixiang Zhang; Xingsheng Shu; Xianxiong Chen; Yatao Yang; Junxian Ma; Le Cheng; Xiaomei Wang; Ying Ying
Journal:  J Cell Mol Med       Date:  2020-02-13       Impact factor: 5.310

4.  Ginsenoside Rb1 Ameliorated Bavachin-Induced Renal Fibrosis via Suppressing Bip/eIF2α/CHOP Signaling-Mediated EMT.

Authors:  Yu-Hao Ni; Hui-Fang Deng; Lei Zhou; Cong-Shu Huang; Ning-Ning Wang; Lan-Xin Yue; Gao-Fu Li; Hui-Jing Yu; Wei Zhou; Yue Gao
Journal:  Front Pharmacol       Date:  2022-07-08       Impact factor: 5.988

5.  Integrated single-cell transcriptomics and proteomics reveal cellular-specific responses and microenvironment remodeling in aristolochic acid nephropathy.

Authors:  Jiayun Chen; Piao Luo; Chen Wang; Chuanbin Yang; Yunmeng Bai; Xueling He; Qian Zhang; Junzhe Zhang; Jing Yang; Shuang Wang; Jigang Wang
Journal:  JCI Insight       Date:  2022-08-22

Review 6.  Nephrotoxicity of Herbal Medicine and Its Prevention.

Authors:  Xiaofen Xu; Ruyi Zhu; Jialiang Ying; Mengting Zhao; Xin Wu; Gang Cao; Kuilong Wang
Journal:  Front Pharmacol       Date:  2020-10-15       Impact factor: 5.810

  6 in total

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