--------------------------
AMPK / mTOR
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Oxidative stress activates AMPK in cultured cells primarily by increasing cellular AMP and/or ADP
F. Romana Auciello, Fiona A. Ross, Naoko Ikematsu, D. Grahame Hardie
http://www.sciencedirect.com/science/article/pii/S0014579314005742
Combined SFK/mTOR Inhibition Prevents Rapamycin-Induced Feedback Activation of AKT and Elicits Efficient Tumor Regression
Jennifer L. Yori, Kristen L. Lozada, Darcie D. Seachrist, Jonathan D. Mosley, Fadi W. Abdul-Karim, Christine N. Booth, Chris A. Flask, and Ruth A. Keri
http://cancerres.aacrjournals.org/content/74/17/4762.abstract?etoc
mTORC1/2 targeted by n-3 polyunsaturated fatty acids in the prevention of mammary tumorigenesis and tumor progression
Z Chen, Y Zhang, C Jia, Y Wang, P Lai, X Zhou, Y Wang, Q Song, Jun Lin, Z Ren, Q Gao, Z Zhao, H Zheng, Z Wan, T Gao, A Zhao, Y Dai and X Bai
http://www.nature.com/onc/journal/v33/n37/abs/onc2013402a.html
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Metformin
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Mechanism of Metformin-dependent Inhibition of mTOR and Ras Activity in Pancreatic Cancer: Role of Sp Transcription Factors
Vijayalekshmi Nair, Sandeep Sreevalsan, Riyaz Basha, Maen Abdelrahim, Ala Abudayyeh, Aline Rodrigues Hoffman, and Stephen H. Safe
http://www.jbc.org/content/early/2014/08/20/jbc.M114.592576.abstract
Effects of metformin and other biguanides on oxidative phosphorylation in mitochondria
Hannah R. Bridges, Andrew J. Y. Jones, Michael N. Pollak and Judy Hirst
http://www.biochemj.org/bj/462/bj4620475.htm
Metformin directly acts on mitochondria to alter cellular bioenergetics
Andrzejewski S, Gravel S, Pollak M, St-Pierre J
http://www.cancerandmetabolism.com/content/2/1/12/abstract
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Cachexia
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A Switch from White to Brown Fat Increases Energy Expenditure in Cancer-Associated Cachexia
Michele Petruzzelli, Martina Schweiger, Renate Schreiber, Ramon Campos-Olivas, Maria Tsoli, John Allen, Michael Swarbrick, Stefan Rose-John, Mercedes Rincon, Graham Robertson, Rudolf Zechner, Erwin F. Wagner
http://www.cell.com/cell-metabolism/abstract/S1550-4131(14)00276-9
Metabolic reprogramming induced by ketone bodies diminishes pancreatic cancer cachexia
Shukla SK, Gebregiworgis T, Purohit V, Chaika NV, Gunda V, Radhakrishnan P, Mehla K, Pipinos II, Powers R, Yu F, Singh PK
http://www.cancerandmetabolism.com/content/2/1/18/abstract
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Miscellaneous
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Glucose metabolism is inhibited by caspases upon the induction of apoptosis
L A Pradelli, E Villa, B Zunino, S Marchetti and J-E Ricci
http://www.nature.com/cddis/journal/v5/n9/abs/cddis2014371a.html?WT.ec_id=CDDIS-201409
Deficient Chaperone-Mediated Autophagy in Liver Leads to Metabolic Dysregulation
Jaime L. Schneider, Yousin Suh, Ana Maria Cuervo
http://www.cell.com/cell-metabolism/abstract/S1550-4131(14)00274-5
mTOR- and HIF-1α–mediated aerobic glycolysis as metabolic basis for trained immunity
Shih-Chin Cheng, Jessica Quintin, Robert A. Cramer, Kelly M. Shepardson, Sadia Saeed, Vinod Kumar, Evangelos J. Giamarellos-Bourboulis, Joost H. A. Martens, Nagesha Appukudige Rao, Ali Aghajanirefah, Ganesh R. Manjeri, Yang Li, Daniela C. Ifrim, Rob J. W. Arts,
Brian M. J. W. van der Meer, Peter M. T. Deen, Colin Logie, Luke A. O’Neill, Peter Willems, Frank L. van de Veerdonk, Jos W. M. van der Meer,Aylwin Ng, Leo A. B. Joosten, Cisca Wijmenga, Hendrik G. Stunnenberg, Ramnik J. Xavier, Mihai G. Netea
http://www.sciencemag.org/content/345/6204/1250684.abstract?utm_campaign=email-sci-toc
Bcl-6 directly represses the gene program of the glycolysis pathway
Kenneth J Oestreich, Kaitlin A Read, Sarah E Gilbertson, Kenneth P Hough, Paul W McDonald, Veena Krishnamoorthy & Amy S Weinmann
http://www.nature.com/ni/journal/v15/n10/full/ni.2985.html
TIGAR Has a Dual Role in Cancer Cell Survival through Regulating Apoptosis and Autophagy
Jia-Ming Xie, Bin Li, Hong-Pei Yu, Quan-Geng Gao, Wei Li, Hao-Rong Wu, and Zheng-Hong Qin
http://cancerres.aacrjournals.org/content/74/18/5127.abstract?etoc
Architecture of mammalian respiratory complex I
Kutti R. Vinothkumar, Jiapeng Zhu & Judy Hirst
http://www.nature.com/nature/journal/vaop/ncurrent/full/nature13686.html
ARTD1/PARP1 Negatively Regulates Glycolysis by Inhibiting Hexokinase 1 Independent of NAD+ Depletion
Elise Fouquerel, Eva M. Goellner, Zhongxun Yu, Jean-Philippe Gagné, Michelle Barbi de Moura, Tim Feinstein, David Wheeler, Philip Redpath, Jianfeng Li, Guillermo Romero, Marie Migaud, Bennett Van Houten, Guy G. Poirier, Robert W. Sobol
http://www.cell.com/cell-reports/abstract/S2211-1247(14)00712-8
HRG-1 enhances cancer cell invasive potential and couples glucose metabolism to cytosolic/extracellular pH gradient regulation by the vacuolar-H+ ATPase
F M Fogarty, J O'Keeffe, A Zhadanov, D Papkovsky, V Ayllon and R O'Connor
http://www.nature.com/onc/journal/v33/n38/abs/onc2013403a.html
ER Stress Cooperates with Hypernutrition to Trigger TNF-Dependent Spontaneous HCC Development
Hayato Nakagawa, Atsushi Umemura, Koji Taniguchi, Joan Font-Burgada, Debanjan Dhar, Hisanobu Ogata, Zhenyu Zhong, Mark A. Valasek, Ekihiro Seki, Juan Hidalgo, Kazuhiko Koike, Randal J. Kaufman, Michael Karin
http://www.cell.com/cancer-cell/abstract/S1535-6108(14)00277-3
-------------------
Reviews
-------------------
Metabolic control of cell death
Douglas R. Green, Lorenzo Galluzzi, Guido Kroemer
http://www.sciencemag.org/content/345/6203/1250256.abstract
Endothelial cell metabolism: parallels and divergences with cancer cell metabolism
Verdegem D, Moens S, Stapor P, Carmeliet P
http://www.cancerandmetabolism.com/content/2/1/19/abstract
Genetically Modeled Mice with Mutations in Mitochondrial Metabolic Enzymes for the Study of Cancer
Jose I Piruat and África Millán-Uclés
http://journal.frontiersin.org/Journal/10.3389/fonc.2014.00200/full
Action at a Distance: Allostery and the Development of Drugs to Target Cancer Cell Metabolism
Byron DeLaBarre, Jonathan Hurov, Giovanni Cianchetta, Stuart Murray, Lenny Dang
http://www.cell.com/chemistry-biology/abstract/S1074-5521%2814%2900282-8
Obesity, Cholesterol Metabolism, and Breast Cancer Pathogenesis
Donald P. McDonnell, Sunghee Park, Matthew T. Goulet, Jeff Jasper, Suzanne E. Wardell, Ching-yi Chang, John D. Norris, John R. Guyton, and Erik R. Nelson
http://cancerres.aacrjournals.org/content/74/18/4976.abstract?etoc
--------------------------------
Opinion / Previews
--------------------------------
Q&A: targeting autophagy in cancer—a new therapeutic?
White E
http://www.cancerandmetabolism.com/content/2/1/14/abstract
Endoplasmic Reticulum Stress: At the Crossroads of Inflammation and Metabolism in Hepatocellular Carcinoma Development
Marion Maurel, Afshin Samali, Eric Chevet
http://www.cell.com/cancer-cell/abstract/S1535-6108(14)00336-5
Inhibition of autophagy attenuates pancreatic cancer growth independent of TP53/TRP53 status
Annan Yang and Alec C Kimmelman
https://www.landesbioscience.com/journals/autophagy/article/29961/
Arginine deprivation and autophagic cell death in cancer
Peter Wojciech Szlosarek
http://www.pnas.org/content/111/39/14015.extract.html?etoc
Inhibiting HIF with Fructose-1,6-Bisphosphastase
http://stke.sciencemag.org/content/7/343/ec253.abstract?utm_campaign=email-sig-toc
Loss of Fructose-1,6-Bisphosphatase 1 Is Critical for Renal Carcinoma
http://cancerdiscovery.aacrjournals.org/content/4/9/984.2.abstract?etoc
mTORC1 Regulates Proteasome-Mediated Protein Degradation
http://cancerdiscovery.aacrjournals.org/content/4/9/984.1.abstract?etoc
Targeting Lipogenesis Blocks Adaptation to Antiangiogenic Therapy
http://cancerdiscovery.aacrjournals.org/content/4/9/OF16.abstract?etoc
p62 Loss Reprograms Stromal Metabolism to Promote Tumor Growth
http://cancerdiscovery.aacrjournals.org/content/4/9/OF17.abstract?etoc
--
Cristina Muñoz Pinedo
Cell Death Regulation Group
IDIBELL (Bellvitge Biomedical Research Institute)
tel +34 93 260 7130 - fax +34 93 260 7426
http://www.idibell.cat/modul/regulacio-de-la-mort-cellular/EN
http://www.cancer-metabolism.org
Mailing address:
Cristina Muñoz-Pinedo
Fundació IDIBELL
Hospital Duran i Reynals 3ª planta
Gran Vía de L'Hospitalet 199
L'Hospitalet (Barcelona)
08908 España