The origins of enzyme kinetics (English)
- New search for: Cornish-Bowden, Athel
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In:
FEBS Letters
;
587
, 17
;
2725-2730
;
2013
- Article (Journal) / Electronic Resource
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Title:The origins of enzyme kinetics
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Contributors:Cornish-Bowden, Athel ( author )
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Published in:FEBS Letters ; 587, 17 ; 2725-2730
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Publisher:
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Publication date:2013-09-02
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Size:6 pages
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ISSN:
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DOI:
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Type of media:Article (Journal)
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Type of material:Electronic Resource
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Language:English
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Keywords:
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Source:
Table of contents – Volume 587, Issue 17
The tables of contents are generated automatically and are based on the data records of the individual contributions available in the index of the TIB portal. The display of the Tables of Contents may therefore be incomplete.
- 2711
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IntroductionCornish-Bowden, Athel et al. | 2013
- 2712
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The kinetics of invertin actionMichaelis, L. / Menten, Miss Maud L. et al. | 2013
- 2712
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The kinetics of invertin action:Translated by T.R.C. Boyde Submitted 4 February 1913Michaelis, L. / Menten, M. M. et al. | 2013
- 2721
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In memory of Professor Leonor Michaelis in Nagoya: Great contributions to biochemistry in Japan in the first half of the 20th centuryNagatsu, Toshiharu (Toshi) et al. | 2013
- 2725
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The origins of enzyme kineticsCornish-Bowden, Athel et al. | 2013
- 2731
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Chemical and genomic evolution of enzyme‐catalyzed reaction networksKanehisa, Minoru et al. | 2013
- 2738
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Temperature and the catalytic activity of enzymes: A fresh understandingDaniel, Roy M. / Danson, Michael J. et al. | 2013
- 2744
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Exploration of the spontaneous fluctuating activity of single enzyme moleculesSchwabe, Anne / Maarleveld, Timo R. / Bruggeman, Frank J. et al. | 2013
- 2753
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A century of enzyme kinetic analysis, 1913 to 2013Johnson, Kenneth A. et al. | 2013
- 2767
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Michaelis and Menten and the long road to the discovery of cooperativityCárdenas, María Luz et al. | 2013
- 2772
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A note on the kinetics of enzyme action: A decomposition that highlights thermodynamic effectsNoor, Elad / Flamholz, Avi / Liebermeister, Wolfram / Bar-Even, Arren / Milo, Ron et al. | 2013
- 2778
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Oscillatory enzyme reactions and Michaelis–Menten kineticsGoldbeter, Albert et al. | 2013
- 2785
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Solvent isotope and viscosity effects on the steady‐state kinetics of the flavoprotein nitroalkane oxidaseGadda, Giovanni / Fitzpatrick, Paul F. et al. | 2013
- 2790
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‘Chiral compartmentation’ in metabolism: Enzyme stereo‐specificity yielding evolutionary optionsKuchel, Philip W. / Pagès, Guilhem / Naumann, Christoph et al. | 2013
- 2798
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Establishing catalytic activity on an artificial (βα)8‐barrel protein designed from identical half‐barrelsSperl, Josef M. / Rohweder, Bettina / Rajendran, Chitra / Sterner, Reinhard et al. | 2013
- 2806
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Methylerythritol phosphate pathway to isoprenoids: Kinetic modeling and in silico enzyme inhibitions in Plasmodium falciparumSingh, Vivek Kumar / Ghosh, Indira et al. | 2013
- 2818
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Effect of substrate competition in kinetic models of metabolic networksSchäuble, Sascha / Stavrum, Anne Kristin / Puntervoll, Pål / Schuster, Stefan / Heiland, Ines et al. | 2013
- 2825
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Hexokinase and not glycogen synthase controls the flux through the glycogen synthesis pathway in frog oocytesPreller, Ana / Wilson, Christian A.M. / Quiroga-Roger, Diego / Ureta, Tito et al. | 2013
- 2832
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A model of yeast glycolysis based on a consistent kinetic characterisation of all its enzymesSmallbone, Kieran / Messiha, Hanan L. / Carroll, Kathleen M. / Winder, Catherine L. / Malys, Naglis / Dunn, Warwick B. / Murabito, Ettore / Swainston, Neil / Dada, Joseph O. / Khan, Farid et al. | 2013
- 2842
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A mutational analysis of active site residues in trans‐3‐chloroacrylic acid dehalogenasePoelarends, Gerrit J. / Serrano, Hector / Huddleston, Jamison P. / Johnson, William H. / Whitman, Christian P. et al. | 2013
- 2851
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Co‐evolution of HAD phosphatase and hotdog‐fold thioesterase domain function in the menaquinone‐pathway fusion proteins BF1314 and PG1653Wang, Min / Song, Feng / Wu, Rui / Allen, Karen N. / Mariano, Patrick S. / Dunaway-Mariano, Debra et al. | 2013
- 2860
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A new regulatory principle for in vivo biochemistry: Pleiotropic low affinity regulation by the adenine nucleotides – Illustrated for the glycolytic enzymes of Saccharomyces cerevisiaeMensonides, Femke I.C. / Bakker, Barbara M. / Cremazy, Frederic / Messiha, Hanan L. / Mendes, Pedro / Boogerd, Fred C. / Westerhoff, Hans V. et al. | 2013
- 2868
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A generic rate equation for catalysed, template‐directed polymerisationHofmeyr, Jan-Hendrik S. / Gqwaka, Olona P.C. / Rohwer, Johann M. et al. | 2013
- 2876
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pH‐rate profiles support a general base mechanism for galactokinase (Lactococcus lactis)Reinhardt, Laurie A. / Thoden, James B. / Peters, Greg S. / Holden, Hazel M. / Cleland, W.W. et al. | 2013
- 2882
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A generic rate law for surface‐active enzymesKartal, Önder / Ebenhöh, Oliver et al. | 2013
- 2891
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The average enzyme principleReznik, Ed / Chaudhary, Osman / Segrè, Daniel et al. | 2013
- i
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Editorial Board| 2013