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A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation

The degradation of cholesterol and related steroids by microbes follows fundamentally different strategies in aerobic and anaerobic environments. In anaerobic bacteria, the primary C26 of the isoprenoid side chain is hydroxylated without oxygen via a three-step cascade: (i) water-dependent hydroxyla...

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Autores principales: Jacoby, Christian, Goerke, Malina, Bezold, Dominik, Jessen, Henning, Boll, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8449060/
https://www.ncbi.nlm.nih.gov/pubmed/34425106
http://dx.doi.org/10.1016/j.jbc.2021.101105
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author Jacoby, Christian
Goerke, Malina
Bezold, Dominik
Jessen, Henning
Boll, Matthias
author_facet Jacoby, Christian
Goerke, Malina
Bezold, Dominik
Jessen, Henning
Boll, Matthias
author_sort Jacoby, Christian
collection PubMed
description The degradation of cholesterol and related steroids by microbes follows fundamentally different strategies in aerobic and anaerobic environments. In anaerobic bacteria, the primary C26 of the isoprenoid side chain is hydroxylated without oxygen via a three-step cascade: (i) water-dependent hydroxylation at the tertiary C25, (ii) ATP-dependent dehydration to form a subterminal alkene, and (iii) water-dependent hydroxylation at the primary C26 to form an allylic alcohol. However, the enzymes involved in the ATP-dependent dehydration have remained unknown. Here, we isolated an ATP-dependent 25-hydroxy-steroid kinase (25-HSK) from the anaerobic bacterium Sterolibacterium denitrificans. This highly active enzyme preferentially phosphorylated the tertiary C25 of steroid alcohols, including metabolites of cholesterol and sitosterol degradation or 25-OH-vitamin D(3). Kinetic data were in agreement with a sequential mechanism via a ternary complex. Remarkably, 25-HSK readily catalyzed the formation of γ-((18)O)(2)-ATP from ADP and the C25-((18)O)(2)-phosphoester. The observed full reversibility of 25-HSK with an equilibrium constant below one can be rationalized by an unusual high phosphoryl transfer potential of tertiary steroid C25-phosphoesters, which is ≈20 kJ mol(−1) higher than that of standard sugar phosphoesters and even slightly greater than the β,γ-phosphoanhydride of ATP. In summary, 25-HSK plays an essential role in anaerobic bacterial degradation of zoo- and phytosterols and shows only little similarity to known phosphotransferases.
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spelling pubmed-84490602021-09-24 A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation Jacoby, Christian Goerke, Malina Bezold, Dominik Jessen, Henning Boll, Matthias J Biol Chem Research Article The degradation of cholesterol and related steroids by microbes follows fundamentally different strategies in aerobic and anaerobic environments. In anaerobic bacteria, the primary C26 of the isoprenoid side chain is hydroxylated without oxygen via a three-step cascade: (i) water-dependent hydroxylation at the tertiary C25, (ii) ATP-dependent dehydration to form a subterminal alkene, and (iii) water-dependent hydroxylation at the primary C26 to form an allylic alcohol. However, the enzymes involved in the ATP-dependent dehydration have remained unknown. Here, we isolated an ATP-dependent 25-hydroxy-steroid kinase (25-HSK) from the anaerobic bacterium Sterolibacterium denitrificans. This highly active enzyme preferentially phosphorylated the tertiary C25 of steroid alcohols, including metabolites of cholesterol and sitosterol degradation or 25-OH-vitamin D(3). Kinetic data were in agreement with a sequential mechanism via a ternary complex. Remarkably, 25-HSK readily catalyzed the formation of γ-((18)O)(2)-ATP from ADP and the C25-((18)O)(2)-phosphoester. The observed full reversibility of 25-HSK with an equilibrium constant below one can be rationalized by an unusual high phosphoryl transfer potential of tertiary steroid C25-phosphoesters, which is ≈20 kJ mol(−1) higher than that of standard sugar phosphoesters and even slightly greater than the β,γ-phosphoanhydride of ATP. In summary, 25-HSK plays an essential role in anaerobic bacterial degradation of zoo- and phytosterols and shows only little similarity to known phosphotransferases. American Society for Biochemistry and Molecular Biology 2021-08-21 /pmc/articles/PMC8449060/ /pubmed/34425106 http://dx.doi.org/10.1016/j.jbc.2021.101105 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Jacoby, Christian
Goerke, Malina
Bezold, Dominik
Jessen, Henning
Boll, Matthias
A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
title A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
title_full A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
title_fullStr A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
title_full_unstemmed A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
title_short A fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
title_sort fully reversible 25-hydroxy steroid kinase involved in oxygen-independent cholesterol side-chain oxidation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8449060/
https://www.ncbi.nlm.nih.gov/pubmed/34425106
http://dx.doi.org/10.1016/j.jbc.2021.101105
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