| Literature DB >> 30691248 |
Sylvain Darnet1, Hubert Schaller2.
Abstract
4,4-Dimethylsterols and 4-methylsterols are sterol biosynthetic intermediates (C4-SBIs) acting as precursors of cholesterol, ergosterol, and phytosterols. Their accumulation caused by genetic lesions or biochemical inhibition causes severe cellular and developmental phenotypes in all organisms. Functional evidence supports their role as meiosis activators or as signaling molecules in mammals or plants. Oxygenated C4-SBIs like 4-carboxysterols act in major biological processes like auxin signaling in plants and immune system development in mammals. It is the purpose of this article to point out important milestones and significant advances in the understanding of the biogenesis and biological activities of C4-SBIs.Entities:
Keywords: 4-methylsterol; C4-demethylation complex (C4DMC); development; genetic disease; hormone; steroid; sterol
Mesh:
Substances:
Year: 2019 PMID: 30691248 PMCID: PMC6385002 DOI: 10.3390/molecules24030451
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Figure 1Sterol and 4-methylsterol structures. (A) carbon numbering. (B) some compounds described in this article. (C) dinosterol and a sterane, a biogeological marker.
Figure 2C4-demethylation pathways in mammals and fungi, and plants. Sterol nomenclature is given in Table 1. (A) pathways in mammals and fungi; (B) pathway in plants; C4-demethylation in eukaryotes: SMO, sterol-4α-methyl-oxidase; C4D, 3β-hydroxysteroid dehydrogenases/C-4 decarboxylase; SKR, sterone ketoreductase, C14-demethylation: CYP51, lanosterol-C14 demethylase. SMT, sterol methyltransferase; 14R, sterol-14-reductase. Each arrow represents an enzymatic step. Graphical insets are from references ([24] in top and [25] bottom panels).
Figure 3Dafachronic acid synthesis in Caenorhabditis elegans. Sterol nomenclature is given in Table 1. C4-demethylation in eukaryotes: HSD-1, 3-hydroxysteroid dehydrogenase/Δ5/Δ4 isomerase (HSD-1); STRM-1, Sterol 4-C-methyltransferase; DAF-9, steroid cytochrome P450 hydroxylase; DAF-36, cholesterol 7-desaturase. Each arrow represents an enzymatic step.
Figure 4Sterol pathways in Methylococcus capsulatus. Sterol nomenclature is given in Table 1. CYP51, lanosterol-C14 demethylase; 14R, sterol-14-reductase; Sdm, sterol demethylase. Each arrow represents an enzymatic step.
Figure 5Chemical inhibitors for C4-SBI accumulation.
IUPAC sterol nomenclature [97].
| ID | Common Name | IUPAC |
|---|---|---|
| M1 | lanosterol | lanosta-8,24-dien-3β-ol |
| M2 | FF-MAS | 4,4-dimethyl-5α-cholesta-8,14,24-trien-3β-ol |
| M3 | T-MAS, 4,4-dimethylzymosterol | 4,4-dimethyl-5α-cholesta-8,24-dien-3β-ol |
| M4 | oxojessic acid, CMMC | 4α-carboxy-4β,14α-dimethyl-9β,19-cyclo-5α-ergosta-24(241)-en-3β-ol |
| M5 | 4α-formyl-lanosterol | 4α-formyl-4β,14α-methyl-cholesta-8,24-dien-3β-ol |
| M6 | zymosterone | 5α-cholesta-8,24-dien-3-one |
| M7 | dinosterol | 4α,23,24-trimethyl-5α-cholesta-22-en-3β-ol |
| M8 | 4α-methyl-24-ethylcholestane | 4α,24-methyl-cholestan-3β-ol |
| M9 | 4α-hydroxymethyl-4β-methyl-zymosterol | 4α-hydroxymethyl-4β-methyl-cholesta-8,24-dien-3β-ol |
| M10 | 4α-formyl-4β-methylzymosterol | 4α-formyl-4β-methyl-cholesta-8,24-dien-3β-ol |
| M11 | 4α-carboxy-4β-methylzymosterol | 4α-carboxy-4β-methyl-cholesta-8,24-dien-3β-ol |
| M12 | 3-keto-4α-methylzymosterol | 4α-methyl-5α-cholesta-8,24-dien-3-one |
| M13 | 4α-methylzymosterol | 4α-methyl-5α-cholesta-8,24-dien-3β-ol |
| M14 | 4α-hydroxymethylzymosterol | 4α-hydroxymethyl-5α-cholesta-8,24-dien-3β-ol |
| M15 | 4α-formylzymosterol | 4α-formyl-5α-cholesta-8,24-dien-3β-ol |
| M16 | 4α-carboxyzymosterol | 4α-carboxy-5α-cholesta-8,24-dien-3β-ol |
| M17 | zymosterol | 5α-cholesta-8,24-dien-3β-ol |
| M18 | cholesterol | cholest-5-en-3β-ol |
| M19 | ergosterol | ergosta-5,7,22E-trien-3β-ol |
| M20 | - | 4α-hydroxymethyl-4β,14α-methyl-cholesta-8,24-dien-3β-ol |
| M21 | - | 4α-carboxy-4β,14α-methyl-cholesta-8,24-dien-3β-ol |
| M22 | cycloartenol | 9β,19-cyclo-lanost-24-en-3β-ol |
| M23 | 24-methylenecycloartanol | 24-methylene-9β,19-cyclo-lanost-3β-ol |
| M24 | 4-hydroxymethyl-24-methylenecycloartanol | 4α-hydroxymethyl-24-methylene-9β,19-cyclo-lanost-3β-ol |
| M25 | 4-formyl-24-methylenecycloartanol | 4α-formyl-24-methylene-9β,19-cyclo-lanost-3β-ol |
| M26 | cycloeucalenone | 24-methylene-9β,19-cyclo-lanost-3-one |
| M27 | 24-methylenelophenol | 4α-methyl-24-methylene-cholest-7-en-3β-ol |
| M28 | 24-ethylidenelophenol | 4α-methyl-24Z-ethylidene-cholest-7-en-3β-ol |
| M29 | 4-hydroxymethyl-24-ethylidenelophenol | 4α-hydroxymethyl-24Z-ethylidene-cholest-7-en-3β-ol |
| M30 | 4-formyl-24-ethylidenelophenol | 4α-formyl-24Z-ethylidene-cholest-7-en-3β-ol |
| M31 | 4-carboxy-24-ethylidenelophenol | 4α-carboxy-24Z-ethylidene-cholest-7-en-3β-ol |
| M32 | avenasterone | 24Z-ethylidene-cholest-7-en-3-one |
| M33 | Δ7-avenasterol | 24Z-ethylidene-cholest-7-en-3β-ol |
| M34 | sitosterol | stigmast-5-en-3β-ol |
| M35 | 4-hydroxymethyl-24-methylenelophenol | 4α-hydroxy-24Z-methylene-cholest-7-en-3β-ol |
| M36 | 4-formyl-24-methylenelophenol | 4α-formyl-24Z-methylene-cholest-7-en-3β-ol |
| M37 | 4-carboxy-24-methylenelophenol | 4α-carboxy-24Z-methylene-cholest-7-en-3β-ol |
| M38 | episterone | 24-methylene-cholest-7-en-3β-one |
| M39 | episterol | 24Z-methylene-cholest-7-en-3β-ol |
| M40 | campesterol | campest-5-en-3β-ol |
| M41 | lathosterone | cholest-7-en-3-one |
| M42 | Δ7-dafachronic acid | (25s)-3-oxocholest-7-en-26-oic acid |
| M43 | - | cholest-4-en-3-one |
| M44 | Δ4-dafachronic acid | (25s)-3-oxocholest-7-en-26-oic acid |
| M45 | lophenol | 4α-methyl-cholest-7-en-3β-ol |
| M46 | 4α-methylcholest-8(14)-enol | 4α-methyl-5α-cholest-8(14)-en-3β-ol |
| M47 | 4β -hydroxymethyl-4α -methyl-zymosterol | 4β -hydroxymethyl-4α -methyl-cholesta-8,24-dien-3β-ol |
| M48 | 4β -formyl-4α -methyl-zymosterol | 4β -formyl-4α -methyl-cholesta-8,24-dien-3β-ol |
| M49 | 4β -carboxy-4α -methyl-zymosterol | 4β -carboxy-4α -methyl-cholesta-8,24-dien-3β-ol |
| M50 | - | 4α-methyl-5α-cholesta-8-en-3β-ol |