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NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells

The role of transcription factor binding to IGHM enhancer 3 (TFE3) in renal cell carcinoma (RCC) is not well understood. Nuclear respiratory factor 1 (NRF-1) may be the positive upstream regulatory gene of TFE3. The aim of the present study was to determine whether NRF-1 could directly regulate the...

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Autores principales: Zhuang, Wenyuan, Dong, Xiang, Wang, Bo, Liu, Ning, Guo, Hongqian, Zhang, Chunni, Gan, Weidong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: D.A. Spandidos 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8323008/
https://www.ncbi.nlm.nih.gov/pubmed/34345304
http://dx.doi.org/10.3892/ol.2021.12940
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author Zhuang, Wenyuan
Dong, Xiang
Wang, Bo
Liu, Ning
Guo, Hongqian
Zhang, Chunni
Gan, Weidong
author_facet Zhuang, Wenyuan
Dong, Xiang
Wang, Bo
Liu, Ning
Guo, Hongqian
Zhang, Chunni
Gan, Weidong
author_sort Zhuang, Wenyuan
collection PubMed
description The role of transcription factor binding to IGHM enhancer 3 (TFE3) in renal cell carcinoma (RCC) is not well understood. Nuclear respiratory factor 1 (NRF-1) may be the positive upstream regulatory gene of TFE3. The aim of the present study was to determine whether NRF-1 could directly regulate the expression of TFE3 and regulate tumorigenesis and progression of RCC through TFE3. Short hairpin RNA (shRNA) was used to silence the expression of NRF-1 in the 786-O human kidney adenocarcinoma cell line and the 293T human embryonic kidney cell line. Luciferase reporter assays were used to determine the relationship between NRF-1 and TFE3. The CHIP experiment was used to verify the actual binding of NRF-1 and TFE3 promoter regions. MitoTimer staining was used to measure mitochondrial biosynthesis. Flow cytometry was used to detect cell cycle and apoptosis. The 786-O and 293T cells were used to examine the underlying mechanism of action. The results demonstrated that NRF-1 could bind to the promoter region of the TFE3 gene and directly regulate the expression of TFE3. Following NRF-1 knockdown, the protein levels of phosphorylated (p)-AKT and p-S6 of mTOR pathway was inhibited, cell cycle progression was blocked, the levels of apoptosis increased, and mitochondrial generation was reduced. Following overexpression of TFE3, the levels of mTOR-associated markers were restored in NRF-1 knockdown cells. These findings suggest that NRF-1 may regulate the mTOR pathway through TFE3 and regulate the energy metabolism, proliferation and growth of cancer cells by directly regulating the expression of TFE3.
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spelling pubmed-83230082021-08-02 NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells Zhuang, Wenyuan Dong, Xiang Wang, Bo Liu, Ning Guo, Hongqian Zhang, Chunni Gan, Weidong Oncol Lett Articles The role of transcription factor binding to IGHM enhancer 3 (TFE3) in renal cell carcinoma (RCC) is not well understood. Nuclear respiratory factor 1 (NRF-1) may be the positive upstream regulatory gene of TFE3. The aim of the present study was to determine whether NRF-1 could directly regulate the expression of TFE3 and regulate tumorigenesis and progression of RCC through TFE3. Short hairpin RNA (shRNA) was used to silence the expression of NRF-1 in the 786-O human kidney adenocarcinoma cell line and the 293T human embryonic kidney cell line. Luciferase reporter assays were used to determine the relationship between NRF-1 and TFE3. The CHIP experiment was used to verify the actual binding of NRF-1 and TFE3 promoter regions. MitoTimer staining was used to measure mitochondrial biosynthesis. Flow cytometry was used to detect cell cycle and apoptosis. The 786-O and 293T cells were used to examine the underlying mechanism of action. The results demonstrated that NRF-1 could bind to the promoter region of the TFE3 gene and directly regulate the expression of TFE3. Following NRF-1 knockdown, the protein levels of phosphorylated (p)-AKT and p-S6 of mTOR pathway was inhibited, cell cycle progression was blocked, the levels of apoptosis increased, and mitochondrial generation was reduced. Following overexpression of TFE3, the levels of mTOR-associated markers were restored in NRF-1 knockdown cells. These findings suggest that NRF-1 may regulate the mTOR pathway through TFE3 and regulate the energy metabolism, proliferation and growth of cancer cells by directly regulating the expression of TFE3. D.A. Spandidos 2021-09 2021-07-22 /pmc/articles/PMC8323008/ /pubmed/34345304 http://dx.doi.org/10.3892/ol.2021.12940 Text en Copyright: © Zhuang et al. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License (https://creativecommons.org/licenses/by-nc-nd/4.0/) , which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Articles
Zhuang, Wenyuan
Dong, Xiang
Wang, Bo
Liu, Ning
Guo, Hongqian
Zhang, Chunni
Gan, Weidong
NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells
title NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells
title_full NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells
title_fullStr NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells
title_full_unstemmed NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells
title_short NRF-1 directly regulates TFE3 and promotes the proliferation of renal cancer cells
title_sort nrf-1 directly regulates tfe3 and promotes the proliferation of renal cancer cells
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8323008/
https://www.ncbi.nlm.nih.gov/pubmed/34345304
http://dx.doi.org/10.3892/ol.2021.12940
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