Yeast increases glycolytic flux to support higher growth rates accompanied by decreased metabolite regulation and lower protein phosphorylation
Artikel i vetenskaplig tidskrift, 2023

Supply of Gibbs free energy and precursors are vital for cellular function and cell metabolism have evolved to be tightly regulated to balance their supply and consumption. Precursors and Gibbs free energy are generated in the central carbon metabolism (CCM), and fluxes through these pathways are precisely regulated. However, how fluxes through CCM pathways are affected by posttranslational modification and allosteric regulation remains poorly understood. Here, we integrated multi-omics data collected under nine different chemostat conditions to explore how fluxes in the CCM are regulated in the yeast Saccharomyces cerevisiae. We deduced a pathway- and metabolism-specific CCM flux regulation mechanism using hierarchical analysis combined with mathematical modeling. We found that increased glycolytic flux associated with an increased specific growth rate was accompanied by a decrease in flux regulation by metabolite concentrations, including the concentration of allosteric effectors, and a decrease in the phosphorylation level of glycolytic enzymes.

metabolism

Crabtree effect

yeast

omics integration

Författare

Min Chen

East China University of Science and Technology

Tingting Xie

East China University of Science and Technology

Huan Li

East China University of Science and Technology

Yingping Zhuang

East China University of Science and Technology

Jianye Xia

East China University of Science and Technology

Chinese Academy of Sciences

Jens B Nielsen

Chalmers, Life sciences, Systembiologi

BioInnovation Institute

Proceedings of the National Academy of Sciences of the United States of America

0027-8424 (ISSN) 1091-6490 (eISSN)

Vol. 120 25

Ämneskategorier (SSIF 2011)

Cellbiologi

Biokemi och molekylärbiologi

Mikrobiologi

DOI

10.1073/pnas.2302779120

PubMed

37307493

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Senast uppdaterat

2026-06-24