Functional and Phylogenetic Diversity of BSH and PVA Enzymes

Bile salt hydrolase (BSH) and penicillin V acylase (PVA) are related enzymes that are classified as choloylglycine hydrolases (CGH). BSH enzymes have attracted significant interest for their ability to modulate the composition of the bile acid pool, alter bile acid signaling events mediated by the h...

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Main Authors: Jack W. Daly, Stephen J. Keely, Cormac G.M. Gahan
Format: Article
Language:English
Published: MDPI AG 2021-03-01
Series:Microorganisms
Subjects:
FXR
Online Access:https://www.mdpi.com/2076-2607/9/4/732
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spelling doaj-ce92c4e8e9d945bab501c96ab17a8f0d2021-03-31T23:07:44ZengMDPI AGMicroorganisms2076-26072021-03-01973273210.3390/microorganisms9040732Functional and Phylogenetic Diversity of BSH and PVA EnzymesJack W. Daly0Stephen J. Keely1Cormac G.M. Gahan2Alimentary Pharmabiotic Centre Microbiome Ireland, University College Cork, T12 YT20 Cork, IrelandDepartment of Molecular Medicine, RCSI Education and Research Centre, Beaumont Hospital, D09 V2N0 Dublin, IrelandAlimentary Pharmabiotic Centre Microbiome Ireland, University College Cork, T12 YT20 Cork, IrelandBile salt hydrolase (BSH) and penicillin V acylase (PVA) are related enzymes that are classified as choloylglycine hydrolases (CGH). BSH enzymes have attracted significant interest for their ability to modulate the composition of the bile acid pool, alter bile acid signaling events mediated by the host bile acid receptors FXR and TGR5 and influence cholesterol homeostasis in the host, while PVA enzymes have been widely utilised in an industrial capacity in the production of semi-synthetic antibiotics. The similarities between BSH and PVA enzymes suggest common evolution of these enzymes and shared mechanisms for substrate binding and catalysis. Here, we compare BSH and PVA through analysis of the distribution, phylogeny and biochemistry of these microbial enzymes. The development of new annotation approaches based upon functional enzyme analyses and the potential implications of BSH enzymes for host health are discussed.https://www.mdpi.com/2076-2607/9/4/732bile salt hydrolasepenicillin V acylasecholesterolbile acidmicrobiomeFXR
collection DOAJ
language English
format Article
sources DOAJ
author Jack W. Daly
Stephen J. Keely
Cormac G.M. Gahan
spellingShingle Jack W. Daly
Stephen J. Keely
Cormac G.M. Gahan
Functional and Phylogenetic Diversity of BSH and PVA Enzymes
Microorganisms
bile salt hydrolase
penicillin V acylase
cholesterol
bile acid
microbiome
FXR
author_facet Jack W. Daly
Stephen J. Keely
Cormac G.M. Gahan
author_sort Jack W. Daly
title Functional and Phylogenetic Diversity of BSH and PVA Enzymes
title_short Functional and Phylogenetic Diversity of BSH and PVA Enzymes
title_full Functional and Phylogenetic Diversity of BSH and PVA Enzymes
title_fullStr Functional and Phylogenetic Diversity of BSH and PVA Enzymes
title_full_unstemmed Functional and Phylogenetic Diversity of BSH and PVA Enzymes
title_sort functional and phylogenetic diversity of bsh and pva enzymes
publisher MDPI AG
series Microorganisms
issn 2076-2607
publishDate 2021-03-01
description Bile salt hydrolase (BSH) and penicillin V acylase (PVA) are related enzymes that are classified as choloylglycine hydrolases (CGH). BSH enzymes have attracted significant interest for their ability to modulate the composition of the bile acid pool, alter bile acid signaling events mediated by the host bile acid receptors FXR and TGR5 and influence cholesterol homeostasis in the host, while PVA enzymes have been widely utilised in an industrial capacity in the production of semi-synthetic antibiotics. The similarities between BSH and PVA enzymes suggest common evolution of these enzymes and shared mechanisms for substrate binding and catalysis. Here, we compare BSH and PVA through analysis of the distribution, phylogeny and biochemistry of these microbial enzymes. The development of new annotation approaches based upon functional enzyme analyses and the potential implications of BSH enzymes for host health are discussed.
topic bile salt hydrolase
penicillin V acylase
cholesterol
bile acid
microbiome
FXR
url https://www.mdpi.com/2076-2607/9/4/732
work_keys_str_mv AT jackwdaly functionalandphylogeneticdiversityofbshandpvaenzymes
AT stephenjkeely functionalandphylogeneticdiversityofbshandpvaenzymes
AT cormacgmgahan functionalandphylogeneticdiversityofbshandpvaenzymes
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