7-oxo-C and 7-beta-HC pathways (Homo sapiens)
From WikiPathways
Description
The Oxysterol group of compounds are oxygenated derivatives of cholesterol or its sterol precursors, e.g. 7-dehydrocholesterol (7-DHC) or desmosterol. There are three mechanisms leading to the formation of oxysterols: 1) Enzymatically (first steps of sterol metabolism, being intermediates for the formation of steroid hormones, bile acids and 1,25-dihydroxyvitamin D3); see https://www.wikipathways.org/instance/WP4545, 2) Non-enzymatically by encountering reactive oxygen species (ROS), providing a second pool of metabolites (this pool also includes oxidized cholesterol molecules taken in from diet); described in this pathway, and 3) Generation by the gut microflora and uptake through the enterohepatic circulation.
Previously oxysterols where though to be inactive metabolic intermediates, however recent findings have established that these metabolites are involved in cholesterol homoeostasis, can be ligands to nuclear and G protein-coupled receptors and biomarkers of diseases (for example Niemann-Pick disease).
This pathway describes Figure 4 and 5 from Griffiths et al. 2020 and was extended with disease information.Quality Tags
Ontology Terms
Bibliography
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- Fagerberg L, Hallström BM, Oksvold P, Kampf C, Djureinovic D, Odeberg J, Habuka M, Tahmasebpoor S, Danielsson A, Edlund K, Asplund A, Sjöstedt E, Lundberg E, Szigyarto CA, Skogs M, Takanen JO, Berling H, Tegel H, Mulder J, Nilsson P, Schwenk JM, Lindskog C, Danielsson F, Mardinoglu A, Sivertsson A, von Feilitzen K, Forsberg M, Zwahlen M, Olsson I, Navani S, Huss M, Nielsen J, Ponten F, Uhlén M; ''Analysis of the human tissue-specific expression by genome-wide integration of transcriptomics and antibody-based proteomics.''; Mol Cell Proteomics, 2014 PubMed Europe PMC Scholia
- Hunt MC, Rautanen A, Westin MA, Svensson LT, Alexson SE; ''Analysis of the mouse and human acyl-CoA thioesterase (ACOT) gene clusters shows that convergent, functional evolution results in a reduced number of human peroxisomal ACOTs.''; FASEB J, 2006 PubMed Europe PMC Scholia
- Mitić T, Shave S, Semjonous N, McNae I, Cobice DF, Lavery GG, Webster SP, Hadoke PW, Walker BR, Andrew R; ''11β-Hydroxysteroid dehydrogenase type 1 contributes to the balance between 7-keto- and 7-hydroxy-oxysterols in vivo.''; Biochem Pharmacol, 2013 PubMed Europe PMC Scholia
- Raleigh DR, Sever N, Choksi PK, Sigg MA, Hines KM, Thompson BM, Elnatan D, Jaishankar P, Bisignano P, Garcia-Gonzalo FR, Krup AL, Eberl M, Byrne EFX, Siebold C, Wong SY, Renslo AR, Grabe M, McDonald JG, Xu L, Beachy PA, Reiter JF; ''Cilia-Associated Oxysterols Activate Smoothened.''; Mol Cell, 2018 PubMed Europe PMC Scholia
- Jones JM, Gould SJ; ''Identification of PTE2, a human peroxisomal long-chain acyl-CoA thioesterase.''; Biochem Biophys Res Commun, 2000 PubMed Europe PMC Scholia
- Hult M, Elleby B, Shafqat N, Svensson S, Rane A, Jörnvall H, Abrahmsen L, Oppermann U; ''Human and rodent type 1 11beta-hydroxysteroid dehydrogenases are 7beta-hydroxycholesterol dehydrogenases involved in oxysterol metabolism.''; Cell Mol Life Sci, 2004 PubMed Europe PMC Scholia
- Klinke G, Rohrbach M, Giugliani R, Burda P, Baumgartner MR, Tran C, Gautschi M, Mathis D, Hersberger M; ''LC-MS/MS based assay and reference intervals in children and adolescents for oxysterols elevated in Niemann-Pick diseases.''; Clin Biochem, 2015 PubMed Europe PMC Scholia
- Griffiths WJ, Wang Y; ''Oxysterols as lipid mediators: Their biosynthetic genes, enzymes and metabolites.''; Prostaglandins Other Lipid Mediat, 2020 PubMed Europe PMC Scholia
- de Medina P, Paillasse MR, Segala G, Poirot M, Silvente-Poirot S; ''Identification and pharmacological characterization of cholesterol-5,6-epoxide hydrolase as a target for tamoxifen and AEBS ligands.''; Proc Natl Acad Sci U S A, 2010 PubMed Europe PMC Scholia
- Vance JE, Karten B; ''Niemann-Pick C disease and mobilization of lysosomal cholesterol by cyclodextrin.''; J Lipid Res, 2014 PubMed Europe PMC Scholia
- Clayton PT; ''Disorders of bile acid synthesis.''; J Inherit Metab Dis, 2011 PubMed Europe PMC Scholia
- de Medina P, Paillasse MR, Segala G, Voisin M, Mhamdi L, Dalenc F, Lacroix-Triki M, Filleron T, Pont F, Saati TA, Morisseau C, Hammock BD, Silvente-Poirot S, Poirot M; ''Dendrogenin A arises from cholesterol and histamine metabolism and shows cell differentiation and anti-tumour properties.''; Nat Commun, 2013 PubMed Europe PMC Scholia
- Porter FD, Scherrer DE, Lanier MH, Langmade SJ, Molugu V, Gale SE, Olzeski D, Sidhu R, Dietzen DJ, Fu R, Wassif CA, Yanjanin NM, Marso SP, House J, Vite C, Schaffer JE, Ory DS; ''Cholesterol oxidation products are sensitive and specific blood-based biomarkers for Niemann-Pick C1 disease.''; Sci Transl Med, 2010 PubMed Europe PMC Scholia
- Shackleton CH; ''Role of a disordered steroid metabolome in the elucidation of sterol and steroid biosynthesis.''; Lipids, 2012 PubMed Europe PMC Scholia
- Shinkyo R, Xu L, Tallman KA, Cheng Q, Porter NA, Guengerich FP; ''Conversion of 7-dehydrocholesterol to 7-ketocholesterol is catalyzed by human cytochrome P450 7A1 and occurs by direct oxidation without an epoxide intermediate.''; J Biol Chem, 2011 PubMed Europe PMC Scholia
- Schweizer RA, Zürcher M, Balazs Z, Dick B, Odermatt A; ''Rapid hepatic metabolism of 7-ketocholesterol by 11beta-hydroxysteroid dehydrogenase type 1: species-specific differences between the rat, human, and hamster enzyme.''; J Biol Chem, 2004 PubMed Europe PMC Scholia
History
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External references
DataNodes
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Name | Type | Database reference | Comment |
---|---|---|---|
(25R)26-Hydroxy-7-oxocholesterol | Metabolite | LMST04030180 (LIPID MAPS) | |
+1O2 | Metabolite | ||
+3O2 | Metabolite | ||
3b,24R-Dihydroxy-7-oxocholest-5-en-(25R)26-oyl-CoA | Metabolite | LMST04030262 (LIPID MAPS) | |
3b,5a,6b,24R-Tetrahydroxycholestan-(25R)26-oyl-CoA | Metabolite | LMST04030244 (LIPID MAPS) | |
3b,5a,6b-Trihydroxycholan-24-oic acid | Metabolite | LMST04010339 (LIPID MAPS) | |
3b,5a,6b-Trihydroxycholan-24-oyl-CoA | Metabolite | LMST04010459 (LIPID MAPS) | |
3b,5a,6b-Trihydroxycholan-24-oyl-glycine | Metabolite | LMST05030019 (LIPID MAPS) | |
3b,5a,6b-Trihydroxycholestan-(25R)26-oic acid | Metabolite | LMST04030238 (LIPID MAPS) | |
3b,5a-DiH-cholestan-6-one | Metabolite | LMST01010126 (LIPID MAPS) | aka 3b,5a-Dihydroxycholestan-6-one |
3b,7b,24R-Trihydroxycholest-5-en-(25R)26-oyl-CoA | Metabolite | LMST04030261 (LIPID MAPS) | |
3b,7b-Dihydroxychol-5-en-24-oic acid | Metabolite | LMST04010218 (LIPID MAPS) | |
3b,7b-Dihydroxychol-5-en-24-oyl-CoA | Metabolite | LMST04010460 (LIPID MAPS) | |
3b,7b-Dihydroxychol-5-en-24-oyl-glycine | Metabolite | LMST05030017 (LIPID MAPS) | |
3b,7b-Dihydroxycholest-5-en-(25R)26-oic acid | Metabolite | LMST04030235 (LIPID MAPS) | |
3b-Hydroxy-7-oxochol-5-en-24-oic acid | Metabolite | LMST04010394 (LIPID MAPS) | |
3b-Hydroxy-7-oxochol-5-en-24-oyl-CoA | Metabolite | LMST01010461 (LIPID MAPS) | |
3b-Hydroxy-7-oxochol-5-en-24-oyl-glycine | Metabolite | LMST05030018 (LIPID MAPS) | |
3b-Hydroxy-7-oxocholest-5-en-(25R)26-oic acid | Metabolite | LMST04030239 (LIPID MAPS) | |
5a,6a-Epoxycholesterol | Metabolite | LMST01010011 (LIPID MAPS) | |
5alpha-specific DDA synthase | Protein | ||
7-Dehydrocholesterol | Metabolite | LMST01010069 (LIPID MAPS) |
|
7-Oxocholesterol | Metabolite | LMST01010049 (LIPID MAPS) |
|
7b,(25R)26-Dihydroxycholesterol | Metabolite | LMST04030178 (LIPID MAPS) | |
7b-Hydroxycholesterol | Metabolite | LMST01010047 (LIPID MAPS) | |
7b-Peroxycholesterol | Metabolite | LMST01010459 (LIPID MAPS) | |
ACOT11 | Protein | Q8WXI4 (Uniprot-TrEMBL) | |
ACOT12 | Protein | Q8WYK0 (Uniprot-TrEMBL) | |
ACOT13 | Protein | Q9NPJ3 (Uniprot-TrEMBL) | |
ACOT15 | Protein | Q8N1Q8 (Uniprot-TrEMBL) | |
ACOT1 | Protein | Q86TX2 (Uniprot-TrEMBL) | |
ACOT2 | Protein | P49753 (Uniprot-TrEMBL) | "originally thought to be in peroxisome [PMID:10944470)], later found to be mitochondrial [PMID:16940157]" [https://www.uniprot.org/uniprot/P49753] |
ACOT | Protein | 3.1.2.2 (Enzyme Nomenclature) | acyl-CoA thioesterase are a group of enzymes |
ACOT4 | Protein | Q8N9L9 (Uniprot-TrEMBL) | "Compared to mouse peroxisomal succinyl-coenzyme A thioesterase/ACOT4, the human enzyme has a broad substrate specificity overlapping the activity of three mouse acyl-coenzyme A thioesterases, providing an explanation for the unexpectedly low number of acyl-coenzyme A thioesterase genes in the human genome [PMID:16940157]" [https://www.uniprot.org/uniprot/Q8N9L9] |
ACOT6 | Protein | Q3I5F7 (Uniprot-TrEMBL) | |
ACOT7L | Protein | Q6ZUV0 (Uniprot-TrEMBL) | "Could be the product of a pseudogene. The peptide used to produce antibodies against ACOT7L matches at 85% with ACOT7 and the antibodies may not be specific to ACOT7L." [https://www.uniprot.org/uniprot/Q6ZUV0] |
ACOT7 | Protein | O00154 (Uniprot-TrEMBL) | |
ACOT8 | Protein | O14734 (Uniprot-TrEMBL) | |
ACOT9 | Protein | Q9Y305 (Uniprot-TrEMBL) | |
ACOX2 | GeneProduct | ACOX2 (HGNC) | |
AMACR | GeneProduct | AMACR (HGNC) |
|
BAAT | GeneProduct | 570 (Entrez Gene) | amino acid N-acyl transferase |
BAAT | GeneProduct | BAAT (HGNC) | amino acid N-acyl transferase |
BACS (SLC27A5) | GeneProduct | SLC27A5 (HGNC) |
|
CYP27A1 | GeneProduct | CYP27A1 (HGNC) | |
CYP7A1 | GeneProduct | CYP7A1 (HGNC) | |
ChEH | Protein | P34913 (Uniprot-TrEMBL) |
|
Cholestane-3b,5a,6b,(25R)26-tetrol | Metabolite | LMST01010458 (LIPID MAPS) | |
Cholestane-3b,5a,6b-triol | Metabolite | LMST01010052 (LIPID MAPS) | |
Cholesterol | Metabolite | LMST01010001 (LIPID MAPS) | |
D8D7I | Protein | Q15125 (Uniprot-TrEMBL) |
|
DBP | GeneProduct | DBP (HGNC) | D-biofinctional protein; aka MFE2, HSD17B4 |
DHCR7 | Protein | Q9UBM7 (Uniprot-TrEMBL) |
|
Dendrogenin A | Metabolite | LMST05050025 (LIPID MAPS) | |
HSD11B1 | GeneProduct | HSD11B1 (HGNC) | |
HSD11B2 | GeneProduct | HSD11B2 (HGNC) | |
Irinotecan PW | Pathway | WP229 (WikiPathways) | |
LO* | Metabolite | radical (deoxidised) | |
LOH | Metabolite | ||
LOO* | Metabolite | radical | |
LOOH | Metabolite | ||
NPC1 | GeneProduct | NPC1 (HGNC) | |
NPC2 | GeneProduct | NPC2 (HGNC) | |
SCPx (SCP2) | GeneProduct | SCP2 (HGNC) | |
Sphingolipid degradation | Pathway | WP4153 (WikiPathways) | |
Sphingolipid metabolism | Pathway | WP4725 (WikiPathways) | |
VLCS (SLC27A2) | GeneProduct | SLC27A2 (HGNC) |
|
Annotated Interactions
No annotated interactions