Linking metabolism and histone acetylation dynamics by integrated metabolic flux analysis of Acetyl-CoA and histone acetylation sites
Permanent lenke
https://hdl.handle.net/10037/35701Dato
2024-09-19Type
Journal articleTidsskriftartikkel
Peer reviewed
Forfatter
Egger, Anna-Sophia; Rauch, Eva; Sharma, Suraj; Kipura, Tobias; Hotze, Madlen; Mair, Thomas; Hohenegg, Alina; Kobler, Philipp; Heiland, Ines; Kwiatkowski, MarcelSammendrag
Methods - In this study, we present a novel proteo-metabo-flux approach that combines mass spectrometry-based metabolic flux analysis of acetyl-CoA and histone acetylation with computational modelling. We developed a mathematical model to describe metabolic label incorporation into acetyl-CoA and histone acetylation based on experimentally measured relative abundances.
Results - We demonstrate that our approach is able to determine acetyl-CoA synthesis dynamics and site-specific histone acetylation and deacetylation reaction rate constants, and that consideration of the metabolically labelled acetyl-CoA fraction is essential for accurate determination of histone acetylation dynamics. Furthermore, we show that without correction, changes in metabolic fluxes would be misinterpreted as changes in histone acetylation dynamics, whereas our proteo-metabo-flux approach allows to distinguish between the two processes.
Conclusions - Our proteo-metabo-flux approach expands the repertoire of metabolic flux analysis and cross-omics and represents a valuable approach to study the regulatory interplay between metabolism and epigenetic regulation by histone acetylation.