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Targeting transcriptional regulatory complexes represents a promising strategy for activating thermogenic fat and treating obesity. In this study, we focused on identifying critical, specific metabolic pathways enriched during brown adipocyte differentiation. Through analysis of metabolomics and RNA...
2026-03-24 | MTBLS12237 | MetaboLights
This study investigates lipidomic remodeling in mouse brown adipose tissue under a 2 × 3 experimental design involving environmental condition and dietary fatty acid composition. Mice were maintained at room temperature with ad libitum feeding or exposed to 4°C cold conditions with 70% calorie restr...
2026-06-01 | MTBLS14642 | MetaboLights

Glucose uptake is essential for cancer glycolysis and is involved in non-shivering thermogenesis of adipose tissues. Most cancers use glycolysis to harness energy for their infinite growth, invasion and metastasis. Activation of thermogenic metabolism in brown adipose tissue (BAT) by cold an...

2022-08-12 | MTBLS4856 | MetaboLights
Targeting transcriptional regulatory complexes is a promising strategy to activate thermogenic fat and treat obesity. In this study, we focused on identifying critical and specific metabolic pathways enriched during brown adipocyte differentiation. By analyzing metabolomics and RNA sequencing result...
2026-03-24 | MTBLS12234 | MetaboLights
Obesity poses a global health challenge, demanding a deeper understanding of adipose tissue (AT) and its mitochondria. This study describes the role of the mitochondrial protein Methylation-controlled J protein (MCJ/DnaJC15) in orchestrating brown adipose tissue (BAT) thermogenesis. Here we show how...
2024-10-31 | MTBLS11505 | MetaboLights
We performed a genome-wide deep sequencing analysis of the microRNAs abundant in mesenchymal stem cells (MSCs) derived from murine brown adipose tissue and in in vitro differentiated mature brown adipocytes. Several microRNAs were identified as differentially regulated when comparing datasets from M...
ORGANISM(S): Mus musculus 

The integration of omics technologies into molecular biological research has transformed it into a field where a system can be investigated as a whole by combining information from multiple biochemical layers. This extension of traditional molecular biology, where various data sources are conside...

2025-11-12 | MTBLS12307 | MetaboLights

OBJECTIVE: Brown adipose tissue (BAT) burns fatty acids (FAs) to produce heat, and shows diurnal oscillation in glucose and triglyceride (TG)-derived FA-uptake, peaking around wakening. Here we aimed to gain insight in the diurnal regulation of metabolic BAT activity.

2023-11-15 | MTBLS4082 | MetaboLights
We performed ChIP-seq to chart genome-wide maps of H3K27me3 in brown preadipocytes and mature brown adipocytes. We observed a subset of brown fat-specific genes, but not common fat genes or white fat-specific genes, possess the H3K27me3 mark in preadipocytes, and this mark is erased in mature adipoc...
ORGANISM(S): Mus musculus 
Brown and beige adipose tissue are emerging as distinct endocrine organs. These tissues are functionally associated with skeletal muscle, adipose tissue metabolism and systemic energy expenditure, suggesting an interorgan signaling network. Using metabolomics, we identify 3-methyl-2-oxovaleric acid,...
2022-03-03 | MTBLS2436 | MetaboLights
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