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Metabolic control analysis is being exploited in a systems biology study of the eukaryotic cell. Using chemostat culture, we have measured the impact of changes in flux (growth rate) on the transcriptome, proteome, endometabolome and exometabolome of the yeast Saccharomyces cerevisiae. Each function...
2012-04-19 | MTBLS8 | MetaboLights

Adaptation to cellular stresses entails an incompletely understood coordination of transcriptional and post-transcriptional gene regulation. Here, we quantified hypoxia-dependent transcriptomes, epigenomes and translatomes in T47D breast cancer cells and H9 human embryonic stem cells. This reveal...

2025-06-09 | MTBLS12086 | MetaboLights

Gene duplication is a major driver of biological complexity, yet the persistence of highly similar paralogous factors suggests the existence of context-dependent functions that remain incompletely understood. Certain conserved components of the mammalian RNA processing machinery exhibit striking ...

2026-02-09 | MTBLS13877 | MetaboLights
Biotechnology has transformed the production of various chemicals and pharmaceuticals due to its efficient and selective processes, but it is inherently limited by its use of live cells as 'biocatalysts.' Cell-free expression (CFE) systems, which use a protein lysate isolated from whole cells, have ...
2020-06-02 | MTBLS1079 | MetaboLights
Deletion of the glycerol channel aquaporin-9 (Aqp9) reduces postprandial blood glucose levels in leptin receptor deficient (db/db) obese mice on a C57BL/6×C57BLKS mixed genetic background. Furthermore, shRNA mediated reduction of Aqp9 expression reduces liver triacylglycerol (TAG) accumulation in a ...
2015-09-28 | MTBLS219 | MetaboLights
Autism spectrum disorders (ASD) are neurodevelopmental disorders characterized by abnormalities in reciprocal social interactions and language development and/or usage, and by restricted interests and repetitive behaviors. Differential gene expression of neurologically relevant genes in lymphoblasto...
ORGANISM(S): Homo sapiens 
In the budding yeast Saccharomyces cerevisiae, transcription factors (TFs) regulate the periodic expression of many genes during the cell cycle, including gene products required for progression through cell-cycle events. Experimental evidence coupled with quantitative models suggest that a network o...
ORGANISM(S): Saccharomyces Cerevisiae 
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