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Our results that nearly all enzymes in major metabolic pathways, such as glycolysis, PPP, tricarboxylic acid (TCA) cycle, glyoxylate pathway, fatty acid biosynthesis and beta-oxydation are subjected to acetylation support the notion that acetylation may be linked to cellular metabolism at multiple levels.
Collectively, these results indicate that hypoxia induces a coordinated response that affects glycogen metabolism at multiple levels, in a similar fashion to the paradigmatic hypoxic regulation of glycolisis.
Taken together these findings suggest that intrauterine programming may affect key enzymes of lipid metabolism at multiple levels.
HPr-S46 phosphorylation affects cell metabolism at multiple levels exerting its effect through CCR, inducer exclusion, as well as phosphorylation of transcription regulators and several metabolic enzymes [ 47].
Thus, changes in the complement of TACC1 isoforms in the cell may result in alterations in cellular RNA metabolism at multiple levels, and may account for the observation that TACC1D and TACC1F isoforms are associated with tumorigenic changes in gastric mucosa [ 18].
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The ability to link and quantify enzymes that link carbon, organic acid and amino acid metabolism is crucial to understanding metabolic regulation at multiple levels.
Indeed, proper mitochondrial function is required for normal metabolism and health at multiple levels.
In addition to its energy storage function, the fat tissues also secrete a number of hormones and cytokines, and are involved in the control of body metabolism and energy balance at multiple sites [24], [25].
Co-localization of the gene clusters involved in isoprenoid biosynthesis, purple membrane biogenesis, and nucleotide metabolism are also observed at multiple loci across the H. sp. NRC-1 genome.
For example, the following types of reaction schemes and rate expressions were used: Reaction Rate expressions A → B k * [ A ] A + B → A. B k * [ A ] * [ B ] [ Enz ] A → B k * [ Enz ] * [ A ] The enzymes involved in SL metabolism can be regulated at multiple levels from mRNA expression to posttranslational modification.
Metabolism is regulated at multiple-levels with abundance and expression of the metabolic enzymes being one of the most decisive mechanisms.
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Justyna Jupowicz-Kozak
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