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Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)

Glomerular podocytes are highly specialized epithelial cells and play an essential role in establishing the selective permeability of the glomerular filtration barrier of kidney. Maintaining the viability and structural integrity of podocytes is critical to the clinical management of glomerular dise...

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Autores principales: Yu, Xinyi, Chen, Liqun, Wu, Ke, Yan, Shujuan, Zhang, Ruyi, Zhao, Chen, Zeng, Zongyue, Shu, Yi, Huang, Shifeng, Lei, Jiayan, Ji, Xiaojuan, Yuan, Chengfu, Zhang, Linghuan, Feng, Yixiao, Liu, Wei, Huang, Bo, Zhang, Bo, Luo, Wenping, Wang, Xi, Liu, Bo, Haydon, Rex C., Luu, Hue H., He, Tong-Chuan, Gan, Hua
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Chongqing Medical University 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147083/
https://www.ncbi.nlm.nih.gov/pubmed/30258943
http://dx.doi.org/10.1016/j.gendis.2018.04.003
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author Yu, Xinyi
Chen, Liqun
Wu, Ke
Yan, Shujuan
Zhang, Ruyi
Zhao, Chen
Zeng, Zongyue
Shu, Yi
Huang, Shifeng
Lei, Jiayan
Ji, Xiaojuan
Yuan, Chengfu
Zhang, Linghuan
Feng, Yixiao
Liu, Wei
Huang, Bo
Zhang, Bo
Luo, Wenping
Wang, Xi
Liu, Bo
Haydon, Rex C.
Luu, Hue H.
He, Tong-Chuan
Gan, Hua
author_facet Yu, Xinyi
Chen, Liqun
Wu, Ke
Yan, Shujuan
Zhang, Ruyi
Zhao, Chen
Zeng, Zongyue
Shu, Yi
Huang, Shifeng
Lei, Jiayan
Ji, Xiaojuan
Yuan, Chengfu
Zhang, Linghuan
Feng, Yixiao
Liu, Wei
Huang, Bo
Zhang, Bo
Luo, Wenping
Wang, Xi
Liu, Bo
Haydon, Rex C.
Luu, Hue H.
He, Tong-Chuan
Gan, Hua
author_sort Yu, Xinyi
collection PubMed
description Glomerular podocytes are highly specialized epithelial cells and play an essential role in establishing the selective permeability of the glomerular filtration barrier of kidney. Maintaining the viability and structural integrity of podocytes is critical to the clinical management of glomerular diseases, which requires a thorough understanding of podocyte cell biology. As mature podocytes lose proliferative capacity, a conditionally SV40 mutant tsA58-immortalized mouse podocyte line (designated as tsPC) was established from the Immortomouse over 20 years ago. However, the utility of the tsPC cells is hampered by the practical inconvenience of culturing these cells. In this study, we establish a user-friendly and reversibly-immortalized mouse podocyte line (designated as imPOD), on the basis of the tsPC cells by stably expressing the wildtype SV40 T-antigen, which is flanked with FRT sites. We show the imPOD cells exhibit long-term high proliferative activity, which can be effectively reversed by FLP recombinase. The imPOD cells express most podocyte-related markers, including WT-1, Nephrin, Tubulin and Vinculin, but not differentiation marker Synaptopodin. The imPOD cells do not form tumor-like masses in vivo. We further demonstrate that TGFβ1 induces a podocyte injury-like response in the FLP-reverted imPOD cells by suppressing the expression of slit diaphragm-associated proteins P-Cadherin and ZO-1 and upregulating the expression of mesenchymal markers, α-SMA, Vimentin and Nestin, as well as fibrogenic factors CTGF and Col1a1. Collectively, our results strongly demonstrate that the newly engineered imPOD cells should be a valuable tool to study podocyte biology both under normal and under pathological conditions.
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spelling pubmed-61470832018-09-26 Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs) Yu, Xinyi Chen, Liqun Wu, Ke Yan, Shujuan Zhang, Ruyi Zhao, Chen Zeng, Zongyue Shu, Yi Huang, Shifeng Lei, Jiayan Ji, Xiaojuan Yuan, Chengfu Zhang, Linghuan Feng, Yixiao Liu, Wei Huang, Bo Zhang, Bo Luo, Wenping Wang, Xi Liu, Bo Haydon, Rex C. Luu, Hue H. He, Tong-Chuan Gan, Hua Genes Dis Article Glomerular podocytes are highly specialized epithelial cells and play an essential role in establishing the selective permeability of the glomerular filtration barrier of kidney. Maintaining the viability and structural integrity of podocytes is critical to the clinical management of glomerular diseases, which requires a thorough understanding of podocyte cell biology. As mature podocytes lose proliferative capacity, a conditionally SV40 mutant tsA58-immortalized mouse podocyte line (designated as tsPC) was established from the Immortomouse over 20 years ago. However, the utility of the tsPC cells is hampered by the practical inconvenience of culturing these cells. In this study, we establish a user-friendly and reversibly-immortalized mouse podocyte line (designated as imPOD), on the basis of the tsPC cells by stably expressing the wildtype SV40 T-antigen, which is flanked with FRT sites. We show the imPOD cells exhibit long-term high proliferative activity, which can be effectively reversed by FLP recombinase. The imPOD cells express most podocyte-related markers, including WT-1, Nephrin, Tubulin and Vinculin, but not differentiation marker Synaptopodin. The imPOD cells do not form tumor-like masses in vivo. We further demonstrate that TGFβ1 induces a podocyte injury-like response in the FLP-reverted imPOD cells by suppressing the expression of slit diaphragm-associated proteins P-Cadherin and ZO-1 and upregulating the expression of mesenchymal markers, α-SMA, Vimentin and Nestin, as well as fibrogenic factors CTGF and Col1a1. Collectively, our results strongly demonstrate that the newly engineered imPOD cells should be a valuable tool to study podocyte biology both under normal and under pathological conditions. Chongqing Medical University 2018-04-23 /pmc/articles/PMC6147083/ /pubmed/30258943 http://dx.doi.org/10.1016/j.gendis.2018.04.003 Text en © 2018 Chongqing Medical University. Production and hosting by Elsevier B.V. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Yu, Xinyi
Chen, Liqun
Wu, Ke
Yan, Shujuan
Zhang, Ruyi
Zhao, Chen
Zeng, Zongyue
Shu, Yi
Huang, Shifeng
Lei, Jiayan
Ji, Xiaojuan
Yuan, Chengfu
Zhang, Linghuan
Feng, Yixiao
Liu, Wei
Huang, Bo
Zhang, Bo
Luo, Wenping
Wang, Xi
Liu, Bo
Haydon, Rex C.
Luu, Hue H.
He, Tong-Chuan
Gan, Hua
Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)
title Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)
title_full Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)
title_fullStr Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)
title_full_unstemmed Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)
title_short Establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (imPODs)
title_sort establishment and functional characterization of the reversibly immortalized mouse glomerular podocytes (impods)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6147083/
https://www.ncbi.nlm.nih.gov/pubmed/30258943
http://dx.doi.org/10.1016/j.gendis.2018.04.003
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