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>
Cited by
Metabolic reconfiguration is a regulated response to oxidative stress
Chris M Grant
J Biol.
2008;
7(1): 1.
Published online 2008 January 25.
doi: 10.1186/jbiol63
PMCID:
PMC2246036
Abstract
Full Text
PDF–105K
Is Cited by the Following 11 Articles in this Archive:
La-motif–dependent mRNA association with Slf1 promotes copper detoxification in yeast
Luca Schenk, Dominik M. Meinel, Katja Strässer, André P. Gerber
RNA.
2012 March;
18(3): 449–461.
doi: 10.1261/rna.028506.111
PMCID:
PMC3285933
Free in PMC on 2013/03/01
Engineered Trx2p industrial yeast strain protects glycolysis and fermentation proteins from oxidative carbonylation during biomass propagation
Rocío Gómez-Pastor, Roberto Pérez-Torrado, Elisa Cabiscol, Joaquim Ros, Emilia Matallana
Microb Cell Fact.
2012;
11: 4.
Published online 2012 January 9.
doi: 10.1186/1475-2859-11-4
PMCID:
PMC3280929
Abstract
Full Text
PDF–2.3M
Supplementary Material
Pyruvate Kinase Triggers a Metabolic Feedback Loop that Controls Redox Metabolism in Respiring Cells
Nana-Maria Grüning, Mark Rinnerthaler, Katharina Bluemlein, Michael Mülleder, Mirjam M.C. Wamelink, Hans Lehrach, Cornelis Jakobs, Michael Breitenbach, Markus Ralser
Cell Metab.
2011 September 7;
14(3): 415–427.
doi: 10.1016/j.cmet.2011.06.017
PMCID:
PMC3202625
Abstract
Full Text
Supplementary Material
Glyceraldehyde-3-phosphate dehydrogenase is largely unresponsive to low regulatory levels of hydrogen peroxide in
Saccharomyces cerevisiae
Luísa Cyrne, Fernando Antunes, Ana Sousa-Lopes, João Diaz-Bérrio, H Susana Marinho
BMC Biochem.
2010;
11: 49.
Published online 2010 December 28.
doi: 10.1186/1471-2091-11-49
PMCID:
PMC3019127
Abstract
Full Text
PDF–1.0M
Teratogen-Induced Oxidative Stress Targets Glyceraldehyde-3-Phosphate Dehydrogenase in the Organogenesis Stage Mouse Embryo
Ava E. Schlisser, Jin Yan, Barbara F. Hales
Toxicol Sci.
2010 December;
118(2): 686–695.
Published online 2010 October 1.
doi: 10.1093/toxsci/kfq287
PMCID:
PMC2984529
Abstract
Full Text
PDF–687K
Supplementary Material
Tradeoff between enzyme and metabolite efficiency maintains metabolic homeostasis upon perturbations in enzyme capacity
Sarah-Maria Fendt, Joerg Martin Buescher, Florian Rudroff, Paola Picotti, Nicola Zamboni, Uwe Sauer
Mol Syst Biol.
2010;
6: 356.
Published online 2010 April 13.
doi: 10.1038/msb.2010.11
PMCID:
PMC2872607
Abstract
Full Text
PDF–1.0M
Supplementary Material
Venom Proteins of the Parasitoid Wasp
Nasonia vitripennis
: Recent Discovery of an Untapped Pharmacopee
Ellen L. Danneels, David B. Rivers, Dirk C. de Graaf
Toxins (Basel)
2010 April;
2(4): 494–516.
Published online 2010 March 30.
doi: 10.3390/toxins2040494
PMCID:
PMC3153221
Abstract
Full Text
PDF–642K
Sugar metabolism, redox balance and oxidative stress response in the respiratory yeast
Kluyveromyces lactis
M Isabel González-Siso, Ana García-Leiro, Nuria Tarrío, M Esperanza Cerdán
Microb Cell Fact.
2009;
8: 46.
Published online 2009 August 30.
doi: 10.1186/1475-2859-8-46
PMCID:
PMC2754438
Abstract
Full Text
PDF–2.0M
Supplementary Material
Interfering with Glycolysis Causes Sir2-Dependent Hyper-Recombination of
Saccharomyces cerevisiae
Plasmids
Markus Ralser, Ute Zeidler, Hans Lehrach
PLoS ONE.
2009;
4(4): e5376.
Published online 2009 April 24.
doi: 10.1371/journal.pone.0005376
PMCID:
PMC2670500
Abstract
Full Text
PDF–944K
Changes in the effective gravitational field strength affect the state of phosphorylation of stress-related proteins in callus cultures of
Arabidopsis thaliana
Žarko Barjaktarović, Wolfgang Schütz, Johannes Madlung, Claudia Fladerer, Alfred Nordheim, Rüdiger Hampp
J Exp Bot.
2009 March;
60(3): 779–789.
Published online 2009 January 6.
doi: 10.1093/jxb/ern324
PMCID:
PMC2652066
Abstract
Full Text
PDF–497K
Activity motifs reveal principles of timing in transcriptional control of the yeast metabolic network
Gal Chechik, Eugene Oh, Oliver Rando, Jonathan Weissman, Aviv Regev, Daphne Koller
Nat Biotechnol.
Author manuscript; available in PMC 2009 March 5.
Published in final edited form as:
Nat Biotechnol.
2008 November;
26
(11)
: 1251–1259.
doi: 10.1038/nbt.1499
PMCID:
PMC2651818
Abstract
Full Text
PDF–1.9M
Supplementary Material
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