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Drugs targeting DNA and RNA in mammalian cells or viruses can also affect bacteria present in the host and thereby induce the bacterial SOS system. This has the potential to increase mutagenesis and the development of antimicrobial resistance (AMR). Here we have examined nucleoside analogues (NAs) ...
ORGANISM(S): Escherichia coli 
2021-07-15 | PXD025370 | Pride
Lipid metabolism is essential in maintaining energy homeostasis in multicellular organisms. In vertebrates, a group of nuclear receptor transcription factors named peroxisome proliferator-activated receptors (PPARs, NR1C) regulate the expression of many genes involved in these processes. We have rec...
2022-02-28 | MTBLS2131 | MetaboLights
To combat the growing threat of multidrug-resistant bacteria, we need to develop novel antibiotics with unique modes of action. This study investigates the antibacterial properties of BTP-001 towards Escherichia coli. BTP-001 is a β-clamp targeting antimicrobial peptide containing an AlkB homologu 2...
ORGANISM(S): Escherichia coli Bacteria 
2025-08-24 | PXD055475 | Pride
Background: During the lifetime of a fermenter culture, the soil bacterium S. coelicolor undergoes a major metabolic switch from exponential growth to antibiotic production. We have studied gene expression patterns during this switch, using a specifically designed Affymetrix genechip and a high-reso...
ORGANISM(S): Streptomyces coelicolor 
Lipid metabolism is essential in maintaining energy homeostasis in multicellular organisms. In vertebrates, the peroxisome proliferator-activated receptors (PPARs, NR1C) regulate the expression of many genes involved in these processes. Four Ppar subtypes from Atlantic cod (Gadus morhua) were recent...
ORGANISM(S): Gadus morhua (Atlantic cod) 
2022-09-20 | PXD031739 | Pride
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