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Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone

Steroid hormones modulate numerous physiological processes in various higher organisms. Research on the physiology, biosynthesis, and metabolic degradation of steroid hormones is crucial for developing drugs, agrochemicals, and anthelmintics. Most steroid hormone biosynthetic pathways, excluding tho...

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Autores principales: Fujiyama, Keisuke, Hino, Tomoya, Nagano, Shingo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Biophysical Society of Japan 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260165/
https://www.ncbi.nlm.nih.gov/pubmed/35859988
http://dx.doi.org/10.2142/biophysico.bppb-v19.0021
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author Fujiyama, Keisuke
Hino, Tomoya
Nagano, Shingo
author_facet Fujiyama, Keisuke
Hino, Tomoya
Nagano, Shingo
author_sort Fujiyama, Keisuke
collection PubMed
description Steroid hormones modulate numerous physiological processes in various higher organisms. Research on the physiology, biosynthesis, and metabolic degradation of steroid hormones is crucial for developing drugs, agrochemicals, and anthelmintics. Most steroid hormone biosynthetic pathways, excluding those in insects, have been elucidated, and the roles of several cytochrome P450s (CYPs, P450s), heme (iron protoporphyrin IX)-containing monooxygenases, have been identified. Specifically, P450s of the animal steroid hormone biosynthetic pathways and their three dimensional structures and reaction mechanisms have been extensively studied; however, the mechanisms of several uncommon P450 reactions involved in animal steroid hormone biosynthesis and structures and reaction mechanisms of various P450s involved in plant and insect steroid hormone biosynthesis remain unclear. Recently, we determined the crystal structure of P450 responsible for the first and rate-determining step in brassinosteroids biosynthesis and clarified the regio- and stereo-selectivity in the hydroxylation reaction mechanism. In this review, we have outlined the general catalytic cycle, reaction mechanism, and structure of P450s. Additionally, we have described the recent advances in research on the reaction mechanisms of steroid hormone biosynthesis-related P450s, some of which catalyze unusual P450 reactions including C–C bond cleavage reactions by utilizing either a heme–peroxo anion species or compound I as an active oxidizing species. This review article is an extended version of the Japanese article, Structure and mechanism of cytochrome P450s involved in steroid hormone biosynthesis, published in SEIBUTSU BUTSURI Vol. 61, p. 189–191 (2021).
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spelling pubmed-92601652022-07-19 Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone Fujiyama, Keisuke Hino, Tomoya Nagano, Shingo Biophys Physicobiol Review Article (Invited) Steroid hormones modulate numerous physiological processes in various higher organisms. Research on the physiology, biosynthesis, and metabolic degradation of steroid hormones is crucial for developing drugs, agrochemicals, and anthelmintics. Most steroid hormone biosynthetic pathways, excluding those in insects, have been elucidated, and the roles of several cytochrome P450s (CYPs, P450s), heme (iron protoporphyrin IX)-containing monooxygenases, have been identified. Specifically, P450s of the animal steroid hormone biosynthetic pathways and their three dimensional structures and reaction mechanisms have been extensively studied; however, the mechanisms of several uncommon P450 reactions involved in animal steroid hormone biosynthesis and structures and reaction mechanisms of various P450s involved in plant and insect steroid hormone biosynthesis remain unclear. Recently, we determined the crystal structure of P450 responsible for the first and rate-determining step in brassinosteroids biosynthesis and clarified the regio- and stereo-selectivity in the hydroxylation reaction mechanism. In this review, we have outlined the general catalytic cycle, reaction mechanism, and structure of P450s. Additionally, we have described the recent advances in research on the reaction mechanisms of steroid hormone biosynthesis-related P450s, some of which catalyze unusual P450 reactions including C–C bond cleavage reactions by utilizing either a heme–peroxo anion species or compound I as an active oxidizing species. This review article is an extended version of the Japanese article, Structure and mechanism of cytochrome P450s involved in steroid hormone biosynthesis, published in SEIBUTSU BUTSURI Vol. 61, p. 189–191 (2021). The Biophysical Society of Japan 2022-06-01 /pmc/articles/PMC9260165/ /pubmed/35859988 http://dx.doi.org/10.2142/biophysico.bppb-v19.0021 Text en 2022 THE BIOPHYSICAL SOCIETY OF JAPAN https://creativecommons.org/licenses/by-nc-sa/4.0/This article is licensed under the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 Inter­national License. To view a copy of this license, visit 
https://creativecommons.org/licenses/by-nc-sa/4.0/.
spellingShingle Review Article (Invited)
Fujiyama, Keisuke
Hino, Tomoya
Nagano, Shingo
Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone
title Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone
title_full Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone
title_fullStr Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone
title_full_unstemmed Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone
title_short Diverse reactions catalyzed by cytochrome P450 and biosynthesis of steroid hormone
title_sort diverse reactions catalyzed by cytochrome p450 and biosynthesis of steroid hormone
topic Review Article (Invited)
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9260165/
https://www.ncbi.nlm.nih.gov/pubmed/35859988
http://dx.doi.org/10.2142/biophysico.bppb-v19.0021
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