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Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species

Bacterial cytochrome P450 (CYP) enzymes are responsible for the hydroxylation of diverse endogenous substances with a heme molecule used as a cofactor. This study characterized two CYP154C3 proteins from Streptomyces sp. W2061 (CYP154C3‐1) and Streptomyces sp. KCCM40643 (CYP154C3‐2). The enzymatic a...

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Autores principales: Subedi, Pradeep, Kim, Ki-Hwa, Hong, Young-Soo, Lee, Joo-Ho, Oh, Tae-Jin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Microbiology and Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9705902/
https://www.ncbi.nlm.nih.gov/pubmed/33397832
http://dx.doi.org/10.4014/jmb.2010.10020
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author Subedi, Pradeep
Kim, Ki-Hwa
Hong, Young-Soo
Lee, Joo-Ho
Oh, Tae-Jin
author_facet Subedi, Pradeep
Kim, Ki-Hwa
Hong, Young-Soo
Lee, Joo-Ho
Oh, Tae-Jin
author_sort Subedi, Pradeep
collection PubMed
description Bacterial cytochrome P450 (CYP) enzymes are responsible for the hydroxylation of diverse endogenous substances with a heme molecule used as a cofactor. This study characterized two CYP154C3 proteins from Streptomyces sp. W2061 (CYP154C3‐1) and Streptomyces sp. KCCM40643 (CYP154C3‐2). The enzymatic activity assays of both CYPs conducted using heterologous redox partners’ putidaredoxin and putidaredoxin reductase showed substrate flexibility with different steroids and exhibited interesting product formation patterns. The enzymatic characterization revealed good activity over a pH range of 7.0 to 7.8 and the optimal temperature range for activity was 30 to 37°C. The major product was the C16-hydroxylated product and the kinetic profiles and patterns of the generated hydroxylated products differed between the two enzymes. Both enzymes showed a higher affinity toward progesterone, with CYP154C3-1 demonstrating slightly higher activity than CYP154C3-2 for most of the substrates. Oxidizing agents (diacetoxyiodo) benzene (PIDA) and hydrogen peroxide (H(2)O(2)) were also utilized to actively support the redox reactions, with optimum conversion achieved at concentrations of 3 mM and 65 mM, respectively. The oxidizing agents affected the product distribution, influencing the type and selectivity of the CYP-catalyzed reaction. Additionally, CYP154C3s also catalyzed the C–C bond cleavage of steroids. Therefore, CYP154C3s may be a good candidate for the production of modified steroids for various biological uses.
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spelling pubmed-97059022022-12-13 Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species Subedi, Pradeep Kim, Ki-Hwa Hong, Young-Soo Lee, Joo-Ho Oh, Tae-Jin J Microbiol Biotechnol Research article Bacterial cytochrome P450 (CYP) enzymes are responsible for the hydroxylation of diverse endogenous substances with a heme molecule used as a cofactor. This study characterized two CYP154C3 proteins from Streptomyces sp. W2061 (CYP154C3‐1) and Streptomyces sp. KCCM40643 (CYP154C3‐2). The enzymatic activity assays of both CYPs conducted using heterologous redox partners’ putidaredoxin and putidaredoxin reductase showed substrate flexibility with different steroids and exhibited interesting product formation patterns. The enzymatic characterization revealed good activity over a pH range of 7.0 to 7.8 and the optimal temperature range for activity was 30 to 37°C. The major product was the C16-hydroxylated product and the kinetic profiles and patterns of the generated hydroxylated products differed between the two enzymes. Both enzymes showed a higher affinity toward progesterone, with CYP154C3-1 demonstrating slightly higher activity than CYP154C3-2 for most of the substrates. Oxidizing agents (diacetoxyiodo) benzene (PIDA) and hydrogen peroxide (H(2)O(2)) were also utilized to actively support the redox reactions, with optimum conversion achieved at concentrations of 3 mM and 65 mM, respectively. The oxidizing agents affected the product distribution, influencing the type and selectivity of the CYP-catalyzed reaction. Additionally, CYP154C3s also catalyzed the C–C bond cleavage of steroids. Therefore, CYP154C3s may be a good candidate for the production of modified steroids for various biological uses. Korean Society for Microbiology and Biotechnology 2021-03-28 2021-01-04 /pmc/articles/PMC9705902/ /pubmed/33397832 http://dx.doi.org/10.4014/jmb.2010.10020 Text en Copyright © 2021 by The Korean Society for Microbiology and Biotechnology https://creativecommons.org/licenses/by/4.0/This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research article
Subedi, Pradeep
Kim, Ki-Hwa
Hong, Young-Soo
Lee, Joo-Ho
Oh, Tae-Jin
Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species
title Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species
title_full Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species
title_fullStr Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species
title_full_unstemmed Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species
title_short Enzymatic Characterization and Comparison of Two Steroid Hydroxylases CYP154C3-1 and CYP154C3-2 from Streptomyces Species
title_sort enzymatic characterization and comparison of two steroid hydroxylases cyp154c3-1 and cyp154c3-2 from streptomyces species
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9705902/
https://www.ncbi.nlm.nih.gov/pubmed/33397832
http://dx.doi.org/10.4014/jmb.2010.10020
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