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van Eunen K, et al.  (2011) Quantitative analysis of flux regulation through hierarchical regulation analysis. Methods Enzymol 500():571-95

Abstract: Regulation analysis is a methodology that quantifies to what extent a change in the flux through a metabolic pathway is regulated by either gene expression or metabolism. Two extensions to regulation analysis were developed over the past years: (i) the regulation of V(max) can be dissected into the various levels of the gene-expression cascade, such as transcription, translation, protein degradation, etc. and (ii) a time-dependent version allows following flux regulation when cells adapt to changes in their environment. The methodology of the original form of regulation analysis as well as of the two extensions will be described in detail. In addition, we will show what is needed to apply regulation analysis in practice. Studies in which the different versions of regulation analysis were applied revealed that flux regulation was distributed over various processes and depended on time, enzyme, and condition of interest. In the case of the regulation of glycolysis in baker's yeast, it appeared, however, that cells that remain under respirofermentative conditions during a physiological challenge tend to invoke more gene-expression regulation, while a shift between respirofermentative and respiratory conditions invokes an important contribution of metabolic regulation. The complexity of the regulation observed in these studies raises the question what is the advantage of this highly distributed and condition-dependent flux regulation.CI - Copyright (c) 2011 Elsevier Inc. All rights reserved.

Status: Published Type: Journal Article PubMed ID: 21943915

Topics addressed in this paper

Number of different genes curated to this paper: 38

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ADH1 ALD2 ALD3 ALD4 ALD5 ALD6 CDC19 ENO1 ENO2 GPM1
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HXK1 HXK2 HXT1 HXT10 HXT11 HXT13 HXT14 HXT15 HXT16 HXT17
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Topics Genes linked to topics (#21 - 30 )
HXT2 HXT3 HXT4 HXT5 HXT6 HXT7 HXT8 HXT9 PDC1 PFK1
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Topics Genes linked to topics (#31 - 38 )
PFK2 PGI1 PGK1 PYK2 TDH1 TDH2 TDH3 TPI1
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