lanosterol

lanosterol is a lipid of Sterol Lipids (ST) class. Lanosterol is associated with abnormalities such as Infection, Atherosclerosis, Myocardial Infarction, Chagas Disease and Fatty Liver. The involved functions are known as Signal, Cytokinesis, physiological aspects, Stereochemistry and ergosterol biosynthetic process. Lanosterol often locates in Body tissue, Membrane, Plasma membrane, Tissue membrane and Cytoskeletal Filaments. The associated genes with lanosterol are Retinoic Acid Response Element, P4HTM gene, CYP51A1 gene, HM13 gene and SC4MOL gene. The related lipids are pneumocysterol, Sterols, lanosteryl acetate, ebericol and cycloartenol. The related experimental models are Knock-out.

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Introduction

To understand associated biological information of lanosterol, 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 lanosterol?

lanosterol is suspected in Atherosclerosis, Chagas Disease, vaginalis, hypercholesterolemia, Obesity, Infection and other diseases in descending order of the highest number of associated sentences.

Related references are mostly published in these journals:

Disease Cross reference Weighted score Related literature
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Possible diseases from mapped MeSH terms on references

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

MeSH term MeSH ID Detail
Abetalipoproteinemia D000012 7 associated lipids
Carcinoma, Hepatocellular D006528 140 associated lipids
Leukemia, Hairy Cell D007943 5 associated lipids
Xanthomatosis D014973 17 associated lipids
Total 4

PubChem Associated disorders and diseases

What pathways are associated with lanosterol

Lipid pathways are not clear in current pathway databases. We organized associated pathways with lanosterol through full-text articles, including metabolic pathways or pathways of biological mechanisms.

Related references are published most in these journals:

Pathway name Related literatures
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PubChem Biomolecular Interactions and Pathways

Link to PubChem Biomolecular Interactions and Pathways

What cellular locations are associated with lanosterol?

Related references are published most in these journals:

Location Cross reference Weighted score Related literatures
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What functions are associated with lanosterol?


Related references are published most in these journals:

Function Cross reference Weighted score Related literatures

What lipids are associated with lanosterol?

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 lanosterol?

Related references are published most in these journals:


Gene Cross reference Weighted score Related literatures

What common seen animal models are associated with lanosterol?

Knock-out

Knock-out are used in the study 'Dual biosynthetic pathways to phytosterol via cycloartenol and lanosterol in Arabidopsis.' (Ohyama K et al., 2009), Knock-out are used in the study 'Expression, purification, and characterization of Aspergillus fumigatus sterol 14-alpha demethylase (CYP51) isoenzymes A and B.' (Warrilow AG et al., 2010) and Knock-out are used in the study 'Potential biological functions of cytochrome P450 reductase-dependent enzymes in small intestine: novel link to expression of major histocompatibility complex class II genes.' (D'Agostino J et al., 2012).

Related references are published most in these journals:

Model Cross reference Weighted score Related literatures
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NCBI Entrez Crosslinks

All references with lanosterol

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Authors Title Published Journal PubMed Link
Wang F et al. Gonadotropin-regulated expressions of lanosterol 14alpha-demethylase, sterol Delta14-reductase and C-4 sterol methyl oxidase contribute to the accumulation of meiosis-activating sterol in rabbit gonads. 2010 Prostaglandins Other Lipid Mediat. pmid:20193772
Sun C et al. De novo sequencing and analysis of the American ginseng root transcriptome using a GS FLX Titanium platform to discover putative genes involved in ginsenoside biosynthesis. 2010 BMC Genomics pmid:20416102
Sheng C et al. Improved model of lanosterol 14alpha-demethylase by ligand-supported homology modeling: validation by virtual screening and azole optimization. 2010 ChemMedChem pmid:20157915
Kimura M et al. Protostadienol synthase from Aspergillus fumigatus: functional conversion into lanosterol synthase. 2010 Biochem. Biophys. Res. Commun. pmid:19951700
De Luca C and Valacchi G Surface lipids as multifunctional mediators of skin responses to environmental stimuli. 2010 Mediators Inflamm. pmid:20981292
Brockington A et al. Downregulation of genes with a function in axon outgrowth and synapse formation in motor neurones of the VEGFdelta/delta mouse model of amyotrophic lateral sclerosis. 2010 BMC Genomics pmid:20346106
Handa N et al. An unusual lanostane-type triterpenoid, spiroinonotsuoxodiol, and other triterpenoids from Inonotus obliquus. 2010 Phytochemistry pmid:20691456
Zoller E et al. Development, clinical utility, and place in therapy of posaconazole for prevention and treatment of invasive fungal infections. 2010 Drug Des Devel Ther pmid:21116336
Goldstone JV et al. Identification and developmental expression of the full complement of Cytochrome P450 genes in Zebrafish. 2010 BMC Genomics pmid:21087487
Arendrup MC et al. Development of azole resistance in Aspergillus fumigatus during azole therapy associated with change in virulence. 2010 PLoS ONE pmid:20404915
Chen CK et al. Structural characterization of CYP51 from Trypanosoma cruzi and Trypanosoma brucei bound to the antifungal drugs posaconazole and fluconazole. 2010 PLoS Negl Trop Dis pmid:20386598
Choi SY et al. Anti-inflammatory effects of Inonotus obliquus in colitis induced by dextran sodium sulfate. 2010 J. Biomed. Biotechnol. pmid:20300439
Fon Tacer K et al. Adaptation of cholesterol synthesis to fasting and TNF-alpha: profiling cholesterol intermediates in the liver, brain, and testis. 2010 J. Steroid Biochem. Mol. Biol. pmid:20206258
Xu Y et al. Influence of the cystic fibrosis transmembrane conductance regulator on expression of lipid metabolism-related genes in dendritic cells. 2009 Respir. Res. pmid:19344509
Kitahama Y et al. The construction and characterization of self-sufficient lanosterol 14-demethylase fusion proteins consisting of yeast CYP51 and its reductase. 2009 Biol. Pharm. Bull. pmid:19336884
Brannian J et al. Progressive obesity leads to altered ovarian gene expression in the Lethal Yellow mouse: a microarray study. 2009 J Ovarian Res pmid:19650929
Wang W et al. Discovery of highly potent novel antifungal azoles by structure-based rational design. 2009 Bioorg. Med. Chem. Lett. pmid:19748782
Livanec PW et al. Exploring the effects of sterols in model lipid membranes using single-molecule orientations. 2009 J Phys Chem B pmid:19572622
Che X et al. New azoles with potent antifungal activity: design, synthesis and molecular docking. 2009 Eur J Med Chem pmid:19539408
Godio RP and Martín JF Modified oxidosqualene cyclases in the formation of bioactive secondary metabolites: biosynthesis of the antitumor clavaric acid. 2009 Fungal Genet. Biol. pmid:19130892
Sen K and Hackett JC Molecular oxygen activation and proton transfer mechanisms in lanosterol 14alpha-demethylase catalysis. 2009 J Phys Chem B pmid:19438188
Lintker KB et al. A comparison of the packing behavior of egg phosphatidylcholine with cholesterol and biogenically related sterols in Langmuir monolayer films. 2009 Chem. Phys. Lipids pmid:19524563
Bozek K et al. Regulation of clock-controlled genes in mammals. 2009 PLoS ONE pmid:19287494
Sánchez-Wandelmer J et al. Inhibition of cholesterol biosynthesis disrupts lipid raft/caveolae and affects insulin receptor activation in 3T3-L1 preadipocytes. 2009 Biochim. Biophys. Acta pmid:19433058
Slominski AT et al. Sequential metabolism of 7-dehydrocholesterol to steroidal 5,7-dienes in adrenal glands and its biological implication in the skin. 2009 PLoS ONE pmid:19190754
Leszczynska A et al. Investigating the effects of statins on cellular lipid metabolism using a yeast expression system. 2009 PLoS ONE pmid:20041128
Büdefeld T et al. Initiation of steroidogenesis precedes expression of cholesterologenic enzymes in the fetal mouse testes. 2009 Anat Histol Embryol pmid:19793088
Nes WD et al. Sterol 24-C-methyltransferase: an enzymatic target for the disruption of ergosterol biosynthesis and homeostasis in Cryptococcus neoformans. 2009 Arch. Biochem. Biophys. pmid:19014901
Cheng SY et al. Revision of the absolute configuration at C(23) of lanostanoids and isolation of secondary metabolites from formosan soft coral Nephthea erecta. 2009 Chem. Biodivers. pmid:19180458
Acimovic J et al. Combined gas chromatographic/mass spectrometric analysis of cholesterol precursors and plant sterols in cultured cells. 2009 J. Chromatogr. B Analyt. Technol. Biomed. Life Sci. pmid:19525158
Deng JY et al. Dehydroeburicoic acid induces calcium- and calpain-dependent necrosis in human U87MG glioblastomas. 2009 Chem. Res. Toxicol. pmid:19848398
Madoui MA et al. Sterol metabolism in the oomycete Aphanomyces euteiches, a legume root pathogen. 2009 New Phytol. pmid:19496952
Elfita E et al. Antiplasmodial and other constituents from four Indonesian Garcinia spp. 2009 Phytochemistry pmid:19481231
Wang GJ et al. Lanostanes from Phellinus igniarius and their iNOS inhibitory activities. 2009 Planta Med. pmid:19557671
Solomon A et al. Plasma levels of 24S-hydroxycholesterol reflect brain volumes in patients without objective cognitive impairment but not in those with Alzheimer's disease. 2009 Neurosci. Lett. pmid:19560513
Zhang Q et al. Metabolism and pharmacokinetics in rats of ganoderiol F, a highly cytotoxic and antitumor triterpene from Ganoderma lucidum. 2009 J Nat Med pmid:19407927
Ishida K et al. Growth inhibition and ultrastructural alterations induced by Delta24(25)-sterol methyltransferase inhibitors in Candida spp. isolates, including non-albicans organisms. 2009 BMC Microbiol. pmid:19379501
Inada A et al. 24-Ethyl,24-methyl-29-nor-lanostanes from leaves of Freycinetia formosana. 2009 Chem. Pharm. Bull. pmid:19881288
Adamec J et al. Development of a new method for improved identification and relative quantification of unknown metabolites in complex samples: determination of a triterpenoid metabolic fingerprint for the in situ characterization of Ganoderma bioactive compounds. 2009 J Sep Sci pmid:19937965
Dias JR and Gao H 13C nuclear magnetic resonance data of lanosterol derivatives--profiling the steric topology of the steroid skeleton via substituent effects on its 13C NMR. 2009 Spectrochim Acta A Mol Biomol Spectrosc pmid:19800838
Chen M et al. A new triterpene from the fruiting bodies of Ganoderma lucidum. 2009 Yao Xue Xue Bao pmid:19806918
Singh SD et al. Hsp90 governs echinocandin resistance in the pathogenic yeast Candida albicans via calcineurin. 2009 PLoS Pathog. pmid:19649312
Wu J et al. Targeted suppression of heme oxygenase-1 by small interference RNAs inhibits the production of bilirubin in neonatal rat with hyperbilirubinemia. 2009 BMC Mol. Biol. pmid:19646271
Howard SJ et al. Frequency and evolution of Azole resistance in Aspergillus fumigatus associated with treatment failure. 2009 Emerging Infect. Dis. pmid:19624922
Liu J and Nes WD Steroidal triterpenes: design of substrate-based inhibitors of ergosterol and sitosterol synthesis. 2009 Molecules pmid:19924096
Ma LJ et al. Genomic analysis of the basal lineage fungus Rhizopus oryzae reveals a whole-genome duplication. 2009 PLoS Genet. pmid:19578406
Doyle MA et al. LeishCyc: a biochemical pathways database for Leishmania major. 2009 BMC Syst Biol pmid:19497128
Boesze-Battaglia K et al. Cytolethal distending toxin-induced cell cycle arrest of lymphocytes is dependent upon recognition and binding to cholesterol. 2009 J. Biol. Chem. pmid:19240023
Suryadevara PK et al. Structurally simple inhibitors of lanosterol 14alpha-demethylase are efficacious in a rodent model of acute Chagas disease. 2009 J. Med. Chem. pmid:19463001
Wang C et al. Reducing CYP51 inhibits follicle-stimulating hormone induced resumption of mouse oocyte meiosis in vitro. 2009 J. Lipid Res. pmid:19433477