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p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells

The tumor suppressor p53 regulates multiple cellular functions, including energy metabolism. Metabolic deregulation is implicated in the pathogenesis of some cancers and in metabolic disorders and may result from the inactivation of p53 functions. Using RNA sequencing and ChIP sequencing of cancer c...

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Autores principales: Nagano, Hidekazu, Hashimoto, Naoko, Nakayama, Akitoshi, Suzuki, Sawako, Miyabayashi, Yui, Yamato, Azusa, Higuchi, Seiichiro, Fujimoto, Masanori, Sakuma, Ikki, Beppu, Minako, Yokoyama, Masataka, Suzuki, Yutaka, Sugano, Sumio, Ikeda, Kazuhiro, Tatsuno, Ichiro, Manabe, Ichiro, Yokote, Koutaro, Inoue, Satoshi, Tanaka, Tomoaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099896/
https://www.ncbi.nlm.nih.gov/pubmed/30061407
http://dx.doi.org/10.1073/pnas.1804243115
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author Nagano, Hidekazu
Hashimoto, Naoko
Nakayama, Akitoshi
Suzuki, Sawako
Miyabayashi, Yui
Yamato, Azusa
Higuchi, Seiichiro
Fujimoto, Masanori
Sakuma, Ikki
Beppu, Minako
Yokoyama, Masataka
Suzuki, Yutaka
Sugano, Sumio
Ikeda, Kazuhiro
Tatsuno, Ichiro
Manabe, Ichiro
Yokote, Koutaro
Inoue, Satoshi
Tanaka, Tomoaki
author_facet Nagano, Hidekazu
Hashimoto, Naoko
Nakayama, Akitoshi
Suzuki, Sawako
Miyabayashi, Yui
Yamato, Azusa
Higuchi, Seiichiro
Fujimoto, Masanori
Sakuma, Ikki
Beppu, Minako
Yokoyama, Masataka
Suzuki, Yutaka
Sugano, Sumio
Ikeda, Kazuhiro
Tatsuno, Ichiro
Manabe, Ichiro
Yokote, Koutaro
Inoue, Satoshi
Tanaka, Tomoaki
author_sort Nagano, Hidekazu
collection PubMed
description The tumor suppressor p53 regulates multiple cellular functions, including energy metabolism. Metabolic deregulation is implicated in the pathogenesis of some cancers and in metabolic disorders and may result from the inactivation of p53 functions. Using RNA sequencing and ChIP sequencing of cancer cells and preadipocytes, we demonstrate that p53 modulates several metabolic processes via the transactivation of energy metabolism genes including dihydropyrimidinase-like 4 (DPYSL4). DPYSL4 is a member of the collapsin response mediator protein family, which is involved in cancer invasion and progression. Intriguingly, DPYSL4 overexpression in cancer cells and preadipocytes up-regulated ATP production and oxygen consumption, while DPYSL4 knockdown using siRNA or CRISPR/Cas9 down-regulated energy production. Furthermore, DPYSL4 was associated with mitochondrial supercomplexes, and deletion of its dihydropyrimidinase-like domain abolished its association and its ability to stimulate ATP production and suppress the cancer cell invasion. Mouse-xenograft and lung-metastasis models indicated that DPYSL4 expression compromised tumor growth and metastasis in vivo. Consistently, database analyses demonstrated that low DPYSL4 expression was significantly associated with poor survival of breast and ovarian cancers in accordance with its reduced expression in certain types of cancer tissues. Moreover, immunohistochemical analysis using the adipose tissue of obese patients revealed that DPYSL4 expression was positively correlated with INFg and body mass index in accordance with p53 activation. Together, these results suggest that DPYSL4 plays a key role in the tumor-suppressor function of p53 by regulating oxidative phosphorylation and the cellular energy supply via its association with mitochondrial supercomplexes, possibly linking to the pathophysiology of both cancer and obesity.
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spelling pubmed-60998962018-08-21 p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells Nagano, Hidekazu Hashimoto, Naoko Nakayama, Akitoshi Suzuki, Sawako Miyabayashi, Yui Yamato, Azusa Higuchi, Seiichiro Fujimoto, Masanori Sakuma, Ikki Beppu, Minako Yokoyama, Masataka Suzuki, Yutaka Sugano, Sumio Ikeda, Kazuhiro Tatsuno, Ichiro Manabe, Ichiro Yokote, Koutaro Inoue, Satoshi Tanaka, Tomoaki Proc Natl Acad Sci U S A Biological Sciences The tumor suppressor p53 regulates multiple cellular functions, including energy metabolism. Metabolic deregulation is implicated in the pathogenesis of some cancers and in metabolic disorders and may result from the inactivation of p53 functions. Using RNA sequencing and ChIP sequencing of cancer cells and preadipocytes, we demonstrate that p53 modulates several metabolic processes via the transactivation of energy metabolism genes including dihydropyrimidinase-like 4 (DPYSL4). DPYSL4 is a member of the collapsin response mediator protein family, which is involved in cancer invasion and progression. Intriguingly, DPYSL4 overexpression in cancer cells and preadipocytes up-regulated ATP production and oxygen consumption, while DPYSL4 knockdown using siRNA or CRISPR/Cas9 down-regulated energy production. Furthermore, DPYSL4 was associated with mitochondrial supercomplexes, and deletion of its dihydropyrimidinase-like domain abolished its association and its ability to stimulate ATP production and suppress the cancer cell invasion. Mouse-xenograft and lung-metastasis models indicated that DPYSL4 expression compromised tumor growth and metastasis in vivo. Consistently, database analyses demonstrated that low DPYSL4 expression was significantly associated with poor survival of breast and ovarian cancers in accordance with its reduced expression in certain types of cancer tissues. Moreover, immunohistochemical analysis using the adipose tissue of obese patients revealed that DPYSL4 expression was positively correlated with INFg and body mass index in accordance with p53 activation. Together, these results suggest that DPYSL4 plays a key role in the tumor-suppressor function of p53 by regulating oxidative phosphorylation and the cellular energy supply via its association with mitochondrial supercomplexes, possibly linking to the pathophysiology of both cancer and obesity. National Academy of Sciences 2018-08-14 2018-07-30 /pmc/articles/PMC6099896/ /pubmed/30061407 http://dx.doi.org/10.1073/pnas.1804243115 Text en Copyright © 2018 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by-nc-nd/4.0/ This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND) (https://creativecommons.org/licenses/by-nc-nd/4.0/) .
spellingShingle Biological Sciences
Nagano, Hidekazu
Hashimoto, Naoko
Nakayama, Akitoshi
Suzuki, Sawako
Miyabayashi, Yui
Yamato, Azusa
Higuchi, Seiichiro
Fujimoto, Masanori
Sakuma, Ikki
Beppu, Minako
Yokoyama, Masataka
Suzuki, Yutaka
Sugano, Sumio
Ikeda, Kazuhiro
Tatsuno, Ichiro
Manabe, Ichiro
Yokote, Koutaro
Inoue, Satoshi
Tanaka, Tomoaki
p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
title p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
title_full p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
title_fullStr p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
title_full_unstemmed p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
title_short p53-inducible DPYSL4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
title_sort p53-inducible dpysl4 associates with mitochondrial supercomplexes and regulates energy metabolism in adipocytes and cancer cells
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6099896/
https://www.ncbi.nlm.nih.gov/pubmed/30061407
http://dx.doi.org/10.1073/pnas.1804243115
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