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To understand the molecular changes that underwrite enhanced mitochondrial respiration upon MTCH2 knockdown, we performed lipidomics profiling in hMADs adipocytes.

2025-08-04 | MTBLS12815 | MetaboLights

Mitochondrial fatty acid β-oxidation (FAO) is essential for energy production and cellular homeostasis, yet its specific role in sperm function has remained unclear. Through whole-exome sequencing of 673800 patients with asthenozoospermia, we identified biallelic TEX44 variants in six individuals...

2025-07-14 | MTBLS12402 | MetaboLights
Mitochondrial fatty acid β-oxidation (FAO) is essential for energy production and cellular homeostasis, yet its specific role in sperm function has remained unclear. Through whole-exome sequencing of 673 patients with asthenozoospermia, we identified biallelic TEX44 variants in six individuals, all ...
2025-07-14 | MTBLS12397 | MetaboLights
In order to confirm the role of fatty acid β-oxidation in Src regulation, we performed gene expression analysis in MDA231 cells from in vivo model treated with ETX or knockdown of CPT1 or CPT2 using shRNA. As expected, inhibition of β-oxidation showed a gene expression pattern that is opposite to ...
ORGANISM(S): Homo sapiens 
Knockdown CPT1 in NCI-H460 lung cancer cell line
CRISPRi-mediated transcriptional inhibition of CPT1 with two distinct sgRNAs in NCI-H460 lung cancer cells, to investigate the dynamics of gene expression regulation upon CPT1 knockdown.
ORGANISM(S): Homo sapiens 
2024-05-28 | GSE268180 | GEO
Although covalent protein binding is established as the pivotal event underpinning acetaminophen (APAP) toxicity, its mechanistic details remain unclear. In this study, we demonstrated that APAP induces widespread protein glutathionylation in a time-, dose- and bioactivation-dependent manner in Hepa...
ORGANISM(S): Homo Sapiens (human) 
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