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The metabolic demands of cancer cells are coupled to their size and protein synthesis rates

BACKGROUND: Although cells require nutrients to proliferate, most nutrient exchange rates of the NCI60 panel of cancer cell lines correlate poorly with their proliferation rate. Here, we provide evidence indicating that this inconsistency is rooted in the variability of cell size. RESULTS: We integr...

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Autores principales: Dolfi, Sonia C, Chan, Leo Li-Ying, Qiu, Jean, Tedeschi, Philip M, Bertino, Joseph R, Hirshfield, Kim M, Oltvai, Zoltán N, Vazquez, Alexei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178206/
https://www.ncbi.nlm.nih.gov/pubmed/24279929
http://dx.doi.org/10.1186/2049-3002-1-20
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author Dolfi, Sonia C
Chan, Leo Li-Ying
Qiu, Jean
Tedeschi, Philip M
Bertino, Joseph R
Hirshfield, Kim M
Oltvai, Zoltán N
Vazquez, Alexei
author_facet Dolfi, Sonia C
Chan, Leo Li-Ying
Qiu, Jean
Tedeschi, Philip M
Bertino, Joseph R
Hirshfield, Kim M
Oltvai, Zoltán N
Vazquez, Alexei
author_sort Dolfi, Sonia C
collection PubMed
description BACKGROUND: Although cells require nutrients to proliferate, most nutrient exchange rates of the NCI60 panel of cancer cell lines correlate poorly with their proliferation rate. Here, we provide evidence indicating that this inconsistency is rooted in the variability of cell size. RESULTS: We integrate previously reported data characterizing genome copy number variations, gene expression, protein expression and exchange fluxes with our own measurements of cell size and protein content in the NCI60 panel of cell lines. We show that protein content, DNA content, and protein synthesis per cell are proportional to the cell volume, and that larger cells proliferate slower than smaller cells. We estimate the metabolic fluxes of these cell lines and show that their magnitudes are proportional to their protein synthesis rate and, after correcting for cell volume, to their proliferation rate. At the level of gene expression, we observe that genes expressed at higher levels in smaller cells are enriched for genes involved in cell cycle, while genes expressed at higher levels in large cells are enriched for genes expressed in mesenchymal cells. The latter finding is further corroborated by the induction of those same genes following treatment with TGFβ, and the high vimentin but low E-cadherin protein levels in the larger cells. We also find that aromatase inhibitors, statins and mTOR inhibitors preferentially inhibit the in vitro growth of cancer cells with high protein synthesis rates per cell. CONCLUSIONS: The NCI60 cell lines display various metabolic activities, and the type of metabolic activity that they possess correlates with their cell volume and protein content. In addition to cell proliferation, cell volume and/or biomarkers of protein synthesis may predict response to drugs targeting cancer metabolism.
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spelling pubmed-41782062014-10-02 The metabolic demands of cancer cells are coupled to their size and protein synthesis rates Dolfi, Sonia C Chan, Leo Li-Ying Qiu, Jean Tedeschi, Philip M Bertino, Joseph R Hirshfield, Kim M Oltvai, Zoltán N Vazquez, Alexei Cancer Metab Research BACKGROUND: Although cells require nutrients to proliferate, most nutrient exchange rates of the NCI60 panel of cancer cell lines correlate poorly with their proliferation rate. Here, we provide evidence indicating that this inconsistency is rooted in the variability of cell size. RESULTS: We integrate previously reported data characterizing genome copy number variations, gene expression, protein expression and exchange fluxes with our own measurements of cell size and protein content in the NCI60 panel of cell lines. We show that protein content, DNA content, and protein synthesis per cell are proportional to the cell volume, and that larger cells proliferate slower than smaller cells. We estimate the metabolic fluxes of these cell lines and show that their magnitudes are proportional to their protein synthesis rate and, after correcting for cell volume, to their proliferation rate. At the level of gene expression, we observe that genes expressed at higher levels in smaller cells are enriched for genes involved in cell cycle, while genes expressed at higher levels in large cells are enriched for genes expressed in mesenchymal cells. The latter finding is further corroborated by the induction of those same genes following treatment with TGFβ, and the high vimentin but low E-cadherin protein levels in the larger cells. We also find that aromatase inhibitors, statins and mTOR inhibitors preferentially inhibit the in vitro growth of cancer cells with high protein synthesis rates per cell. CONCLUSIONS: The NCI60 cell lines display various metabolic activities, and the type of metabolic activity that they possess correlates with their cell volume and protein content. In addition to cell proliferation, cell volume and/or biomarkers of protein synthesis may predict response to drugs targeting cancer metabolism. BioMed Central 2013-11-07 /pmc/articles/PMC4178206/ /pubmed/24279929 http://dx.doi.org/10.1186/2049-3002-1-20 Text en Copyright © 2013 Dolfi et al.; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Dolfi, Sonia C
Chan, Leo Li-Ying
Qiu, Jean
Tedeschi, Philip M
Bertino, Joseph R
Hirshfield, Kim M
Oltvai, Zoltán N
Vazquez, Alexei
The metabolic demands of cancer cells are coupled to their size and protein synthesis rates
title The metabolic demands of cancer cells are coupled to their size and protein synthesis rates
title_full The metabolic demands of cancer cells are coupled to their size and protein synthesis rates
title_fullStr The metabolic demands of cancer cells are coupled to their size and protein synthesis rates
title_full_unstemmed The metabolic demands of cancer cells are coupled to their size and protein synthesis rates
title_short The metabolic demands of cancer cells are coupled to their size and protein synthesis rates
title_sort metabolic demands of cancer cells are coupled to their size and protein synthesis rates
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4178206/
https://www.ncbi.nlm.nih.gov/pubmed/24279929
http://dx.doi.org/10.1186/2049-3002-1-20
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