Aberrant Intracellular pH Regulation Limiting Glyceraldehyde-3-Phosphate Dehydrogenase Activity in the Glucose-Sensitive Yeast tps1 Δ Mutant

Author:

Van Leemputte Frederik12,Vanthienen Ward12,Wijnants Stefanie12,Van Zeebroeck Griet12,Thevelein Johan M.12ORCID

Affiliation:

1. Laboratory of Molecular Cell Biology, Institute of Botany and Microbiology, Department of Biology, KU Leuven, Leuven-Heverlee, Flanders, Belgium

2. Center for Microbiology, VIB, Leuven-Heverlee, Flanders, Belgium

Abstract

Glucose catabolism is the backbone of metabolism in most organisms. In spite of numerous studies and extensive knowledge, major controls on glycolysis and its connections to the other metabolic pathways remain to be discovered. A striking example is provided by the extreme glucose sensitivity of the yeast tps1 Δ mutant, which undergoes apoptosis in the presence of just a few millimolar glucose. Previous work has shown that the conspicuous glucose-induced hyperaccumulation of the glycolytic metabolite fructose-1,6-bisphosphate (Fru1,6bisP) in tps1 Δ cells triggers apoptosis through activation of the Ras-cAMP-protein kinase A (PKA) signaling pathway. However, the molecular cause of this Fru1,6bisP hyperaccumulation has remained unclear. We now provide evidence that the persistent drop in intracellular pH upon glucose addition to tps1 Δ cells likely compromises the activity of glyceraldehyde-3-phosphate dehydrogenase (GAPDH), a major glycolytic enzyme downstream of Fru1,6bisP, due to its unusually high pH optimum. Our work highlights the potential importance of intracellular pH fluctuations for control of major metabolic pathways.

Funder

Fonds Wetenschappelijk Onderzoek

Agentschap voor Innovatie door Wetenschap en Technologie

Belgian Federal Science Policy Office

KU Leuven | Bijzonder Onderzoeksfonds KU Leuven

Publisher

American Society for Microbiology

Subject

Virology,Microbiology

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