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  • 57 Hits
  • Search Condition : Filter (MeSH = Fatty Acids / metabolism*)
Species Resource Title
Human and Animal Cells COS-7(RCB0539) , 293(RCB1637) Both C1B domain and pseudosubstrate region are necessary for saturated fatty acid-induced translocation of εPKC to the plasma membrane: distinct role of intramolecular domains for different translocation.
Drosophila 6145R NAD kinase sustains lipogenesis and mitochondrial metabolismthrough fatty acid synthesis.
Pathogenic bacteria RIMD 2210633 Vibrio deploys type 2 secreted lipase to esterify cholesterol with host fatty acids and mediate cell egress.
Drosophila DGRC#105442 , DGRC#115356 , DGRC#116261 , DGRC#116262 Fatty acid β-oxidation is required for the differentiation of larval hematopoietic progenitors in Drosophila.
Human and Animal Cells CHO-K1(RCB0285) Imaging of intracellular fatty acids by scanning X-ray fluorescence microscopy.
Human and Animal Cells C2C12(RCB0987) , 293(RCB1637) Daidzein promotes the expression of oxidative phosphorylation- and fatty acid oxidation-related genes via an estrogen-related receptor α pathway to decrease lipid accumulation in muscle cells.
C.elegans tm4221 Dietary fatty acids promote lipid droplet diversity through seipin enrichment in an ER subdomain.
C.elegans tm1011 , tm1978 NHR-49/HNF4 integrates regulation of fatty acid metabolism with a protective transcriptional response to oxidative stress and fasting.
Prokaryotes E. coli MG1655, PA3092 Isolation of colonization-defective Escherichia coli mutants reveals critical requirement for fatty acids in bacterial colony formation.
C.elegans tm2182 , tm3410 , tm5782 , tm420 SREBP and MDT-15 protect C. elegans from glucose-induced accelerated aging by preventing accumulation of saturated fat.
Human and Animal Cells TUHR14TKB(RCB1383) Functional analysis of fatty acid binding protein 7 and its effect on fatty acid of renal cell carcinoma cell lines.
Human and Animal Cells NB1RGB(RCB0222) Detection of unusual very-long-chain fatty acid and ether lipid derivatives in the fibroblasts and plasma of patients with peroxisomal diseases using liquid chromatography-mass spectrometry.
C.elegans tm1037 , tm2308 , tm2581 Genetic deficiency in neuronal peroxisomal fatty acid β-oxidation causes the interruption of dauer development in Caenorhabditis elegans.
C.elegans tm3480 , tm4063 Fatty Acids Regulate Germline Sex Determination through ACS-4-Dependent Myristoylation.
Algae KU-1371 , KU-1372 Parthenosporophytes of the brown alga Ectocarpus siliculosus exhibit sex-dependent differences in thermotolerance as well as fatty acid and sterol composition.
Drosophila CAS-0001 Drosophila Gr64e mediates fatty acid sensing via the phospholipase C pathway.
C.elegans tm1011 , tm331 , tm420 Fatty acid desaturation links germ cell loss to longevity through NHR-80/HNF4 in C. elegans.
C.elegans tm1037 3-Ketoacyl thiolase delays aging of Caenorhabditis elegans and is required for lifespan extension mediated by sir-2.1.
C.elegans tm2290 , tm1045 LYCAT, a homologue of C. elegans acl-8, acl-9, and acl-10, determines the fatty acid composition of phosphatidylinositol in mice.
C.elegans tm3075 , tm3086 PDHK-2 deficiency is associated with attenuation of lipase-mediated fat consumption for the increased survival of Caenorhabditis elegans dauers.