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MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells

The Mondo family transcription factor MondoA plays a pivotal role in sensing metabolites, such as glucose, glutamine, and lactic acid, to regulate glucose metabolism and cell proliferation. Ketone bodies are important signals for reducing glucose uptake. However, it is unclear whether MondoA functio...

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Autores principales: Zhu, Yemin, Xu, Nannan, Wu, Siming, Luan, Yu, Ke, Huiyi, Wu, Lifang, Li, Yakui, Lu, Ying, Xing, Xindan, Tian, Na, Liu, Qi, Tong, Lingfeng, Hu, Lei, Ji, Yingning, Chen, Zhangbing, Zhang, Ping, Tong, Xuemei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9986092/
https://www.ncbi.nlm.nih.gov/pubmed/36398713
http://dx.doi.org/10.1111/cas.15667
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author Zhu, Yemin
Xu, Nannan
Wu, Siming
Luan, Yu
Ke, Huiyi
Wu, Lifang
Li, Yakui
Lu, Ying
Xing, Xindan
Tian, Na
Liu, Qi
Tong, Lingfeng
Hu, Lei
Ji, Yingning
Chen, Zhangbing
Zhang, Ping
Tong, Xuemei
author_facet Zhu, Yemin
Xu, Nannan
Wu, Siming
Luan, Yu
Ke, Huiyi
Wu, Lifang
Li, Yakui
Lu, Ying
Xing, Xindan
Tian, Na
Liu, Qi
Tong, Lingfeng
Hu, Lei
Ji, Yingning
Chen, Zhangbing
Zhang, Ping
Tong, Xuemei
author_sort Zhu, Yemin
collection PubMed
description The Mondo family transcription factor MondoA plays a pivotal role in sensing metabolites, such as glucose, glutamine, and lactic acid, to regulate glucose metabolism and cell proliferation. Ketone bodies are important signals for reducing glucose uptake. However, it is unclear whether MondoA functions in ketone body‐regulated glucose transport. Here we reported that ketone bodies promoted MondoA nuclear translocation and binding to the promoter of its target gene TXNIP. Ketone bodies reduced glucose uptake, increased apoptosis and decreased proliferation of colorectal cancer cells, which was impeded by MondoA knockdown. Moreover, we identified MEK1 as a novel component of the MondoA protein complex using a proteomic approach. Mechanistically, MEK1 interacted with MondoA and enhanced tyrosine 222, but not serine or threonine, phosphorylation of MondoA, inhibiting MondoA nuclear translocation and transcriptional activity. Ketone bodies decreased MEK1‐dependent MondoA phosphorylation by blocking MondoA and MEK1 interaction, leading to MondoA nuclear translocation, TXNIP transcription, and inhibition of glucose uptake. Therefore, our study not only demonstrated that ketone bodies reduce glucose uptake, promote apoptosis, and inhibit cell proliferation in colorectal cancer cells by regulating MondoA phosphorylation but also identified MEK1‐dependent phosphorylation as a new mechanism to manipulate MondoA activity.
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spelling pubmed-99860922023-03-07 MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells Zhu, Yemin Xu, Nannan Wu, Siming Luan, Yu Ke, Huiyi Wu, Lifang Li, Yakui Lu, Ying Xing, Xindan Tian, Na Liu, Qi Tong, Lingfeng Hu, Lei Ji, Yingning Chen, Zhangbing Zhang, Ping Tong, Xuemei Cancer Sci ORIGINAL ARTICLES The Mondo family transcription factor MondoA plays a pivotal role in sensing metabolites, such as glucose, glutamine, and lactic acid, to regulate glucose metabolism and cell proliferation. Ketone bodies are important signals for reducing glucose uptake. However, it is unclear whether MondoA functions in ketone body‐regulated glucose transport. Here we reported that ketone bodies promoted MondoA nuclear translocation and binding to the promoter of its target gene TXNIP. Ketone bodies reduced glucose uptake, increased apoptosis and decreased proliferation of colorectal cancer cells, which was impeded by MondoA knockdown. Moreover, we identified MEK1 as a novel component of the MondoA protein complex using a proteomic approach. Mechanistically, MEK1 interacted with MondoA and enhanced tyrosine 222, but not serine or threonine, phosphorylation of MondoA, inhibiting MondoA nuclear translocation and transcriptional activity. Ketone bodies decreased MEK1‐dependent MondoA phosphorylation by blocking MondoA and MEK1 interaction, leading to MondoA nuclear translocation, TXNIP transcription, and inhibition of glucose uptake. Therefore, our study not only demonstrated that ketone bodies reduce glucose uptake, promote apoptosis, and inhibit cell proliferation in colorectal cancer cells by regulating MondoA phosphorylation but also identified MEK1‐dependent phosphorylation as a new mechanism to manipulate MondoA activity. John Wiley and Sons Inc. 2022-12-04 /pmc/articles/PMC9986092/ /pubmed/36398713 http://dx.doi.org/10.1111/cas.15667 Text en © 2022 The Authors. Cancer Science published by John Wiley & Sons Australia, Ltd on behalf of Japanese Cancer Association. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle ORIGINAL ARTICLES
Zhu, Yemin
Xu, Nannan
Wu, Siming
Luan, Yu
Ke, Huiyi
Wu, Lifang
Li, Yakui
Lu, Ying
Xing, Xindan
Tian, Na
Liu, Qi
Tong, Lingfeng
Hu, Lei
Ji, Yingning
Chen, Zhangbing
Zhang, Ping
Tong, Xuemei
MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
title MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
title_full MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
title_fullStr MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
title_full_unstemmed MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
title_short MEK1‐dependent MondoA phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
title_sort mek1‐dependent mondoa phosphorylation regulates glucose uptake in response to ketone bodies in colorectal cancer cells
topic ORIGINAL ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9986092/
https://www.ncbi.nlm.nih.gov/pubmed/36398713
http://dx.doi.org/10.1111/cas.15667
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