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The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer

An endogenous molecular clockwork drives various cellular pathways including metabolism and the cell cycle. Its dysregulation is able to prompt pathological phenotypes including cancer. Besides dramatic metabolic alterations, cancer cells display severe changes in the clock phenotype with likely con...

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Autores principales: Fuhr, Luise, El-Athman, Rukeia, Scrima, Rosella, Cela, Olga, Carbone, Annalucia, Knoop, Henning, Li, Yin, Hoffmann, Karen, Laukkanen, Mikko O., Corcione, Francesco, Steuer, Ralf, Meyer, Thomas F., Mazzoccoli, Gianluigi, Capitanio, Nazzareno, Relógio, Angela
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6085544/
https://www.ncbi.nlm.nih.gov/pubmed/30005951
http://dx.doi.org/10.1016/j.ebiom.2018.07.002
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author Fuhr, Luise
El-Athman, Rukeia
Scrima, Rosella
Cela, Olga
Carbone, Annalucia
Knoop, Henning
Li, Yin
Hoffmann, Karen
Laukkanen, Mikko O.
Corcione, Francesco
Steuer, Ralf
Meyer, Thomas F.
Mazzoccoli, Gianluigi
Capitanio, Nazzareno
Relógio, Angela
author_facet Fuhr, Luise
El-Athman, Rukeia
Scrima, Rosella
Cela, Olga
Carbone, Annalucia
Knoop, Henning
Li, Yin
Hoffmann, Karen
Laukkanen, Mikko O.
Corcione, Francesco
Steuer, Ralf
Meyer, Thomas F.
Mazzoccoli, Gianluigi
Capitanio, Nazzareno
Relógio, Angela
author_sort Fuhr, Luise
collection PubMed
description An endogenous molecular clockwork drives various cellular pathways including metabolism and the cell cycle. Its dysregulation is able to prompt pathological phenotypes including cancer. Besides dramatic metabolic alterations, cancer cells display severe changes in the clock phenotype with likely consequences in tumor progression and treatment response. In this study, we use a comprehensive systems-driven approach to investigate the effect of clock disruption on metabolic pathways and its impact on drug response in a cellular model of colon cancer progression. We identified distinctive time-related transcriptomic and metabolic features of a primary tumor and its metastatic counterpart. A mapping of the expression data to a comprehensive genome-scale reconstruction of human metabolism allowed for the in-depth functional characterization of 24 h-oscillating transcripts and pointed to a clock-driven metabolic reprogramming in tumorigenesis. In particular, we identified a set of five clock–regulated glycolysis genes, ALDH3A2, ALDOC, HKDC1, PCK2, and PDHB with differential temporal expression patterns. These findings were validated in organoids and in primary fibroblasts isolated from normal colon and colon adenocarcinoma from the same patient. We further identified a reciprocal connection of HKDC1 to the clock in the primary tumor, which is lost in the metastatic cells. Interestingly, a disruption of the core-clock gene BMAL1 impacts on HKDC1 and leads to a time-dependent rewiring of metabolism, namely an increase in glycolytic activity, as well as changes in treatment response. This work provides novel evidence regarding the complex interplay between the circadian clock and metabolic alterations in carcinogenesis and identifies new connections between both systems with pivotal roles in cancer progression and response to therapy.
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spelling pubmed-60855442018-08-13 The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer Fuhr, Luise El-Athman, Rukeia Scrima, Rosella Cela, Olga Carbone, Annalucia Knoop, Henning Li, Yin Hoffmann, Karen Laukkanen, Mikko O. Corcione, Francesco Steuer, Ralf Meyer, Thomas F. Mazzoccoli, Gianluigi Capitanio, Nazzareno Relógio, Angela EBioMedicine Research Paper An endogenous molecular clockwork drives various cellular pathways including metabolism and the cell cycle. Its dysregulation is able to prompt pathological phenotypes including cancer. Besides dramatic metabolic alterations, cancer cells display severe changes in the clock phenotype with likely consequences in tumor progression and treatment response. In this study, we use a comprehensive systems-driven approach to investigate the effect of clock disruption on metabolic pathways and its impact on drug response in a cellular model of colon cancer progression. We identified distinctive time-related transcriptomic and metabolic features of a primary tumor and its metastatic counterpart. A mapping of the expression data to a comprehensive genome-scale reconstruction of human metabolism allowed for the in-depth functional characterization of 24 h-oscillating transcripts and pointed to a clock-driven metabolic reprogramming in tumorigenesis. In particular, we identified a set of five clock–regulated glycolysis genes, ALDH3A2, ALDOC, HKDC1, PCK2, and PDHB with differential temporal expression patterns. These findings were validated in organoids and in primary fibroblasts isolated from normal colon and colon adenocarcinoma from the same patient. We further identified a reciprocal connection of HKDC1 to the clock in the primary tumor, which is lost in the metastatic cells. Interestingly, a disruption of the core-clock gene BMAL1 impacts on HKDC1 and leads to a time-dependent rewiring of metabolism, namely an increase in glycolytic activity, as well as changes in treatment response. This work provides novel evidence regarding the complex interplay between the circadian clock and metabolic alterations in carcinogenesis and identifies new connections between both systems with pivotal roles in cancer progression and response to therapy. Elsevier 2018-07-10 /pmc/articles/PMC6085544/ /pubmed/30005951 http://dx.doi.org/10.1016/j.ebiom.2018.07.002 Text en © 2018 The Authors 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 Research Paper
Fuhr, Luise
El-Athman, Rukeia
Scrima, Rosella
Cela, Olga
Carbone, Annalucia
Knoop, Henning
Li, Yin
Hoffmann, Karen
Laukkanen, Mikko O.
Corcione, Francesco
Steuer, Ralf
Meyer, Thomas F.
Mazzoccoli, Gianluigi
Capitanio, Nazzareno
Relógio, Angela
The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer
title The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer
title_full The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer
title_fullStr The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer
title_full_unstemmed The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer
title_short The Circadian Clock Regulates Metabolic Phenotype Rewiring Via HKDC1 and Modulates Tumor Progression and Drug Response in Colorectal Cancer
title_sort circadian clock regulates metabolic phenotype rewiring via hkdc1 and modulates tumor progression and drug response in colorectal cancer
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6085544/
https://www.ncbi.nlm.nih.gov/pubmed/30005951
http://dx.doi.org/10.1016/j.ebiom.2018.07.002
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