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Steroid Biosynthesis: Comparison
Please note this is a comparison between Version 1 by Yu Peng and Version 3 by Yu Peng.

Steroid biosynthesis is the set of enzyme-catalyzed metabolic pathways that generate sterols and their steroid-derived products from isoprenoid precursors. In the canonical eukaryotic pathway, acetyl-coenzyme A is converted through the mevalonate pathway into activated isoprene units, which are condensed to form squalene; squalene epoxidation and oxidosqualene cyclization then establish the tetracyclic sterol nucleus [1][2]. Subsequent reactions—including demethylation, reduction, oxidation, isomerization, side-chain modification, and hydroxylation—produce lineage-specific membrane sterols, such as cholesterol, phytosterols, or ergosterol, and, where present, downstream steroidal metabolites [2][3]. In animals, steroid biosynthesis also encompasses the conversion of cholesterol into steroid hormones through compartmentalized reactions involving cholesterol side-chain cleavage, hydroxylation, dehydrogenation, and related transformations catalyzed principally by cytochrome P450 enzymes and hydroxysteroid dehydrogenases [3]. The concept therefore includes both construction of the sterol scaffold from isoprenoid metabolism and its enzymatic diversification, but excludes ribosomally encoded peptide synthesis and non-isoprenoid pathways yielding structurally unrelated cyclic lipids.

  • Sterol metabolism
  • mevalonate pathway
  • squalene
  • steroidogenic enzymes

Steroid Chemistry and Biochemistry • Molecular Biology • Biochemistry, Genetics and Molecular Biology • Life Sciences

References

  1. Joseph L. Goldstein; Michael S. Brown; Regulation of the mevalonate pathway. Nat. 1990, 343, 425-430. [CrossRef]
  2. W. David Nes; Biosynthesis of Cholesterol and Other Sterols. Chem. Rev. 2011, 111, 6423-6451. [CrossRef]
  3. Anita H. Payne; Dale B. Hales; Overview of Steroidogenic Enzymes in the Pathway from Cholesterol to Active Steroid Hormones. Endocr. Rev. 2004, 25, 947-970. [CrossRef]
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