Lmfa07050031

Lmfa07050031 is a lipid of Fatty Acyls (FA) class. The involved functions are known as Pigment and Polymerization. The related lipids are Propionate.

Cross Reference

Introduction

To understand associated biological information of Lmfa07050031, we collected biological information of abnormalities, associated pathways, cellular/molecular locations, biological functions, related genes/proteins, lipids and common seen animal/experimental models with organized paragraphs from literatures.

What diseases are associated with Lmfa07050031?

There are no associated biomedical information in the current reference collection.

Possible diseases from mapped MeSH terms on references

We collected disease MeSH terms mapped to the references associated with Lmfa07050031

MeSH term MeSH ID Detail
Medulloblastoma D008527 22 associated lipids
Insulin Resistance D007333 99 associated lipids
Weight Loss D015431 56 associated lipids
Myocardial Stunning D017682 10 associated lipids
Cleft Lip D002971 8 associated lipids
Mitochondrial Myopathies D017240 13 associated lipids
Mercury Poisoning D008630 4 associated lipids
Per page 10 20 50 | Total 27

PubChem Associated disorders and diseases

What pathways are associated with Lmfa07050031

There are no associated biomedical information in the current reference collection.

PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with Lmfa07050031?

There are no associated biomedical information in the current reference collection.

What functions are associated with Lmfa07050031?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with Lmfa07050031?

Related references are published most in these journals:

Lipid concept Cross reference Weighted score Related literatures
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What genes are associated with Lmfa07050031?

There are no associated biomedical information in the current reference collection.

What common seen animal models are associated with Lmfa07050031?

There are no associated biomedical information in the current reference collection.

NCBI Entrez Crosslinks

All references with Lmfa07050031

Download all related citations
Per page 10 20 50 100 | Total 787
Authors Title Published Journal PubMed Link
Liu T et al. Quantitative analysis and engineering of fatty acid biosynthesis in E. coli. 2010 Metab. Eng. pmid:20184964
Xu P et al. Genome-scale metabolic network modeling results in minimal interventions that cooperatively force carbon flux towards malonyl-CoA. 2011 Metab. Eng. pmid:21763447
Richardson MT et al. Tolerance and specificity of recombinant 6-methylsalicyclic acid synthase. 1999 Metab. Eng. pmid:10935930
Zabala D et al. Engineering precursor metabolite pools for increasing production of antitumor mithramycins in Streptomyces argillaceus. 2013 Metab. Eng. pmid:24148183
Doenst T et al. Load-induced changes in vivo alter substrate fluxes and insulin responsiveness of rat heart in vitro. 2001 Metab. Clin. Exp. pmid:11555843
Kurowski TG et al. Malonyl coenzyme A and adiposity in the Dahl salt-sensitive rat: effects of pioglitazone. 1996 Metab. Clin. Exp. pmid:8609842
Pénicaud L et al. Effect of insulin on the properties of liver carnitine palmitoyltransferase in the starved rat: assessment by the euglycemic hyperinsulinemic clamp. 1991 Metab. Clin. Exp. pmid:1861636
Malewiak MI et al. Relationship between lipogenesis, ketogenesis, and malonyl-CoA content in isolated hepatocytes from the obese Zucker rat adapted to a high-fat diet. 1985 Metab. Clin. Exp. pmid:2861554
Xu Y et al. Lipid accumulation is ahead of epithelial-to-mesenchymal transition and therapeutic intervention by acetyl-CoA carboxylase 2 silence in diabetic nephropathy. 2014 Metab. Clin. Exp. pmid:24650564
Guo H et al. Cyanidin-3-O-β-glucoside regulates fatty acid metabolism via an AMP-activated protein kinase-dependent signaling pathway in human HepG2 cells. 2012 Lipids Health Dis pmid:22243683
Zammit VA et al. Lipid molecular order in liver mitochondrial outer membranes, and sensitivity of carnitine palmitoyltransferase I to malonyl-CoA. 1998 Lipids pmid:9590624
DePooter H et al. Composition and variability of the branched-chain fatty acid fraction in the milk of goats and cows. 1981 Lipids pmid:7253839
Domergue F et al. Purification of the acyl-CoA elongase complex from developing rapeseed and characterization of the 3-ketoacyl-CoA synthase and the 3-hydroxyacyl-CoA dehydratase. 2000 Lipids pmid:10907783
Kashfi K et al. Diabetes and proteolysis: effects on carnitine palmitoyltransferase-I and malonyl-CoA binding. 1995 Lipids pmid:7637557
Slakey LL et al. De novo fatty acid synthesis and fatty acid elongation catalyzed by subcellular fractions from hog and human aorta. 1979 Lipids pmid:459710
Zhao Z et al. Rosiglitazone and fenofibrate improve insulin sensitivity of pre-diabetic OLETF rats by reducing malonyl-CoA levels in the liver and skeletal muscle. 2009 Life Sci. pmid:19250943
Kumar S and Srinivasan KR Inactivation of chicken liver fatty acid synthetase by malonyl CoA. 1979 Dec 10-17 Life Sci. pmid:43942
Trumble GE et al. Evidence of a biotin dependent acetyl-coenzyme A carboxylase in rat muscle. 1991 Life Sci. pmid:1675755
Voltti H and Hassinen IE Effect of clofibrate on the hepatic concentrations of citric acid cycle intermediates and malonyl-CoA in the rat. 1981 Life Sci. pmid:7219043
Martini WZ et al. Alteration of hepatic fatty acid metabolism after burn injury in pigs. 2001 Nov-Dec JPEN J Parenter Enteral Nutr pmid:11688934