Literature DB >> 23549172

The Warburg effect version 2.0: metabolic reprogramming of cancer stem cells.

Javier A Menendez1, Jorge Joven, Sílvia Cufí, Bruna Corominas-Faja, Cristina Oliveras-Ferraros, Elisabet Cuyàs, Begoña Martin-Castillo, Eugeni López-Bonet, Tomás Alarcón, Alejandro Vazquez-Martin.   

Abstract

When fighting cancer, knowledge on metabolism has always been important. Today, it matters more than ever. The restricted cataloging of cancer genomes is quite unlikely to achieve the task of curing cancer, unless it is integrated into metabolic networks that respond to and influence the constantly evolving cancer stem cell (CSC) cellular states. Once the genomic era of carcinogenesis had pushed the 1920s Otto Warburg's metabolic cancer hypothesis into obscurity for decades, the most recent studies begin to support a new developing paradigm, in which the molecular logic behind the conversion of non-CSCs into CSCs can be better understood in terms of the "metabolic facilitators" and "metabolic impediments" that operate as proximate openings and roadblocks, respectively, for the transcriptional events and signal transduction programs that ultimately orchestrate the intrinsic and/or microenvironmental paths to CSC cellular states. Here we propose that a profound understanding of how human carcinomas install a proper "Warburg effect version 2.0" allowing them to "run" the CSCs' "software" programs should guide a new era of metabolo-genomic-personalized cancer medicine. By viewing metabolic reprogramming of CSCs as an essential characteristic that allows dynamic, multidimensional and evolving cancer populations to compete successfully for their expansion on the organism, we now argue that CSCs bioenergetics might be another cancer hallmark. A definitive understanding of metabolic reprogramming in CSCs may complement or to some extent replace, the 30-y-old paradigm of targeting oncogenes to treat human carcinomas, because it can be possible to metabolically create non-permissive or "hostile" metabotypes to prevent the occurrence of CSC cellular states with tumor- and metastasis-initiating capacity.

Entities:  

Keywords:  Warburg effect; cancer stem cells; metabolism; pluripotency; reprogramming; stemness

Mesh:

Year:  2013        PMID: 23549172      PMCID: PMC3674082          DOI: 10.4161/cc.24479

Source DB:  PubMed          Journal:  Cell Cycle        ISSN: 1551-4005            Impact factor:   4.534


  103 in total

1.  Resveratrol suppresses growth of cancer stem-like cells by inhibiting fatty acid synthase.

Authors:  Puspa R Pandey; Hiroshi Okuda; Misako Watabe; Sudha K Pai; Wen Liu; Aya Kobayashi; Fei Xing; Koji Fukuda; Shigeru Hirota; Tamotsu Sugai; Go Wakabayashi; Keisuke Koeda; Masahiro Kashiwaba; Kazuyuki Suzuki; Toshimi Chiba; Masaki Endo; Tomoaki Fujioka; Susumu Tanji; Yin-Yuan Mo; Deliang Cao; Andrew C Wilber; Kounosuke Watabe
Journal:  Breast Cancer Res Treat       Date:  2010-12-29       Impact factor: 4.872

2.  Normal and neoplastic nonstem cells can spontaneously convert to a stem-like state.

Authors:  Christine L Chaffer; Ines Brueckmann; Christina Scheel; Alicia J Kaestli; Paul A Wiggins; Leonardo O Rodrigues; Mary Brooks; Ferenc Reinhardt; Ying Su; Kornelia Polyak; Lisa M Arendt; Charlotte Kuperwasser; Brian Bierie; Robert A Weinberg
Journal:  Proc Natl Acad Sci U S A       Date:  2011-04-15       Impact factor: 11.205

Review 3.  Inducing iPSCs to escape the dish.

Authors:  Bonnie Barrilleaux; Paul S Knoepfler
Journal:  Cell Stem Cell       Date:  2011-08-05       Impact factor: 24.633

4.  Human induced pluripotent stem cells harbor homoplasmic and heteroplasmic mitochondrial DNA mutations while maintaining human embryonic stem cell-like metabolic reprogramming.

Authors:  Alessandro Prigione; Björn Lichtner; Heiner Kuhl; Eduard A Struys; Mirjam Wamelink; Hans Lehrach; Markus Ralser; Bernd Timmermann; James Adjaye
Journal:  Stem Cells       Date:  2011-09       Impact factor: 6.277

Review 5.  Energy metabolism in nuclear reprogramming.

Authors:  Clifford D L Folmes; Timothy J Nelson; Andre Terzic
Journal:  Biomark Med       Date:  2011-12       Impact factor: 2.851

6.  Repositioning chloroquine and metformin to eliminate cancer stem cell traits in pre-malignant lesions.

Authors:  Alejandro Vazquez-Martin; Eugeni López-Bonetc; Sílvia Cufí; Cristina Oliveras-Ferraros; Sonia Del Barco; Begoña Martin-Castillo; Javier A Menendez
Journal:  Drug Resist Updat       Date:  2011-05-19       Impact factor: 18.500

7.  Somatic oxidative bioenergetics transitions into pluripotency-dependent glycolysis to facilitate nuclear reprogramming.

Authors:  Clifford D L Folmes; Timothy J Nelson; Almudena Martinez-Fernandez; D Kent Arrell; Jelena Zlatkovic Lindor; Petras P Dzeja; Yasuhiro Ikeda; Carmen Perez-Terzic; Andre Terzic
Journal:  Cell Metab       Date:  2011-08-03       Impact factor: 27.287

8.  Stochastic state transitions give rise to phenotypic equilibrium in populations of cancer cells.

Authors:  Piyush B Gupta; Christine M Fillmore; Guozhi Jiang; Sagi D Shapira; Kai Tao; Charlotte Kuperwasser; Eric S Lander
Journal:  Cell       Date:  2011-08-19       Impact factor: 41.582

9.  Metformin and energy metabolism in breast cancer: from insulin physiology to tumour-initiating stem cells.

Authors:  A Vazquez-Martin; C Oliveras-Ferraros; S Cufí; B Martin-Castillo; J A Menendez
Journal:  Curr Mol Med       Date:  2010-10       Impact factor: 2.222

10.  Energy metabolism in human pluripotent stem cells and their differentiated counterparts.

Authors:  Sandra Varum; Ana S Rodrigues; Michelle B Moura; Olga Momcilovic; Charles A Easley; João Ramalho-Santos; Bennett Van Houten; Gerald Schatten
Journal:  PLoS One       Date:  2011-06-17       Impact factor: 3.240

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  76 in total

1.  Intraperitoneal delivery of a novel liposome-encapsulated paclitaxel redirects metabolic reprogramming and effectively inhibits cancer stem cells in Taxol(®)-resistant ovarian cancer.

Authors:  Yao-An Shen; Wai-Hou Li; Po-Hung Chen; Chun-Lin He; Yen-Hou Chang; Chi-Mu Chuang
Journal:  Am J Transl Res       Date:  2015-05-15       Impact factor: 4.060

Review 2.  Targeting cancer stem cells from a metabolic perspective.

Authors:  Yao-An Shen; Siao-Cian Pan; I Chu; Ruo-Yun Lai; Yau-Huei Wei
Journal:  Exp Biol Med (Maywood)       Date:  2020-02-26

3.  Mapping of the circulating metabolome reveals α-ketoglutarate as a predictor of morbid obesity-associated non-alcoholic fatty liver disease.

Authors:  E Rodríguez-Gallego; M Guirro; M Riera-Borrull; A Hernández-Aguilera; R Mariné-Casadó; S Fernández-Arroyo; R Beltrán-Debón; F Sabench; M Hernández; D del Castillo; J A Menendez; J Camps; R Ras; L Arola; J Joven
Journal:  Int J Obes (Lond)       Date:  2014-03-28       Impact factor: 5.095

Review 4.  Cancer stem cells: a potential target for cancer therapy.

Authors:  Hong Qiu; Xiaoguang Fang; Qi Luo; Gaoliang Ouyang
Journal:  Cell Mol Life Sci       Date:  2015-05-13       Impact factor: 9.261

Review 5.  Metabolic control of cancer cell stemness: Lessons from iPS cells.

Authors:  Javier A Menendez
Journal:  Cell Cycle       Date:  2015       Impact factor: 4.534

6.  Exploring the Process of Energy Generation in Pathophysiology by Targeted Metabolomics: Performance of a Simple and Quantitative Method.

Authors:  Marta Riera-Borrull; Esther Rodríguez-Gallego; Anna Hernández-Aguilera; Fedra Luciano; Rosa Ras; Elisabet Cuyàs; Jordi Camps; Antonio Segura-Carretero; Javier A Menendez; Jorge Joven; Salvador Fernández-Arroyo
Journal:  J Am Soc Mass Spectrom       Date:  2015-09-17       Impact factor: 3.109

7.  Gerometabolites: the pseudohypoxic aging side of cancer oncometabolites.

Authors:  Javier A Menendez; Tomás Alarcón; Jorge Joven
Journal:  Cell Cycle       Date:  2014-02-03       Impact factor: 4.534

8.  Hyaluronan Production Regulates Metabolic and Cancer Stem-like Properties of Breast Cancer Cells via Hexosamine Biosynthetic Pathway-coupled HIF-1 Signaling.

Authors:  Theerawut Chanmee; Pawared Ontong; Tomomi Izumikawa; Miho Higashide; Nobutoshi Mochizuki; Chatchadawalai Chokchaitaweesuk; Manatsanan Khansai; Kazuki Nakajima; Ikuko Kakizaki; Prachya Kongtawelert; Naoyuki Taniguchi; Naoki Itano
Journal:  J Biol Chem       Date:  2016-10-06       Impact factor: 5.157

9.  Acquired resistance to metformin in breast cancer cells triggers transcriptome reprogramming toward a degradome-related metastatic stem-like profile.

Authors:  Cristina Oliveras-Ferraros; Alejandro Vazquez-Martin; Elisabet Cuyàs; Bruna Corominas-Faja; Esther Rodríguez-Gallego; Salvador Fernández-Arroyo; Begoña Martin-Castillo; Jorge Joven; Javier A Menendez
Journal:  Cell Cycle       Date:  2014-02-07       Impact factor: 4.534

10.  Metabolic regulation of cancer cell side population by glucose through activation of the Akt pathway.

Authors:  P-P Liu; J Liao; Z-J Tang; W-J Wu; J Yang; Z-L Zeng; Y Hu; P Wang; H-Q Ju; R-H Xu; P Huang
Journal:  Cell Death Differ       Date:  2013-10-04       Impact factor: 15.828

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