Cargando…

Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH

Nitroreductases are emerging as attractive bioremediation enzymes, with substrate promiscuity toward both natural and synthetic compounds. Recently, the nitroreductase NfnB from Sphingopyxis sp. strain HMH exhibited metabolic activity for dinitroaniline herbicides including butralin and pendimethali...

Descripción completa

Detalles Bibliográficos
Autores principales: Kim, Sang-Hoon, Park, Sangyun, Park, Eunyoung, Kim, Jeong-Han, Ghatge, Sunil, Hur, Hor-Gil, Rhee, Sangkee
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/PMC8484813/
https://www.ncbi.nlm.nih.gov/pubmed/34473996
http://dx.doi.org/10.1016/j.jbc.2021.101143
_version_ 1784577400072306688
author Kim, Sang-Hoon
Park, Sangyun
Park, Eunyoung
Kim, Jeong-Han
Ghatge, Sunil
Hur, Hor-Gil
Rhee, Sangkee
author_facet Kim, Sang-Hoon
Park, Sangyun
Park, Eunyoung
Kim, Jeong-Han
Ghatge, Sunil
Hur, Hor-Gil
Rhee, Sangkee
author_sort Kim, Sang-Hoon
collection PubMed
description Nitroreductases are emerging as attractive bioremediation enzymes, with substrate promiscuity toward both natural and synthetic compounds. Recently, the nitroreductase NfnB from Sphingopyxis sp. strain HMH exhibited metabolic activity for dinitroaniline herbicides including butralin and pendimethalin, triggering the initial steps of their degradation and detoxification. However, the determinants of the specificity of NfnB for these herbicides are unknown. In this study, we performed structural and biochemical analyses of NfnB to decipher its substrate specificity. The homodimer NfnB is a member of the PnbA subgroup of the nitroreductase family. Each monomer displays a central α + β fold for the core domain, with a protruding middle region and an extended C-terminal region. The protruding middle region of Val75–Tyr129 represents a structural extension that is a common feature to members of the PnbA subgroup and functions as an opening wall connecting the coenzyme FMN-binding site to the surface, therefore serving as a substrate binding site. We performed mutational, kinetic, and structural analyses of mutant enzymes and found that Tyr88 in the middle region plays a pivotal role in substrate specificity by determining the dimensions of the wall opening. The mutation of Tyr88 to phenylalanine or alanine caused significant changes in substrate selectivity toward bulkier dinitroaniline herbicides such as oryzalin and isopropalin without compromising its activity. These results provide a framework to modify the substrate specificity of nitroreductase in the PnbA subgroup, which has been a challenging issue for its biotechnological and bioremediation applications.
format Online
Article
Text
id pubmed-8484813
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-84848132021-10-06 Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH Kim, Sang-Hoon Park, Sangyun Park, Eunyoung Kim, Jeong-Han Ghatge, Sunil Hur, Hor-Gil Rhee, Sangkee J Biol Chem Research Article Nitroreductases are emerging as attractive bioremediation enzymes, with substrate promiscuity toward both natural and synthetic compounds. Recently, the nitroreductase NfnB from Sphingopyxis sp. strain HMH exhibited metabolic activity for dinitroaniline herbicides including butralin and pendimethalin, triggering the initial steps of their degradation and detoxification. However, the determinants of the specificity of NfnB for these herbicides are unknown. In this study, we performed structural and biochemical analyses of NfnB to decipher its substrate specificity. The homodimer NfnB is a member of the PnbA subgroup of the nitroreductase family. Each monomer displays a central α + β fold for the core domain, with a protruding middle region and an extended C-terminal region. The protruding middle region of Val75–Tyr129 represents a structural extension that is a common feature to members of the PnbA subgroup and functions as an opening wall connecting the coenzyme FMN-binding site to the surface, therefore serving as a substrate binding site. We performed mutational, kinetic, and structural analyses of mutant enzymes and found that Tyr88 in the middle region plays a pivotal role in substrate specificity by determining the dimensions of the wall opening. The mutation of Tyr88 to phenylalanine or alanine caused significant changes in substrate selectivity toward bulkier dinitroaniline herbicides such as oryzalin and isopropalin without compromising its activity. These results provide a framework to modify the substrate specificity of nitroreductase in the PnbA subgroup, which has been a challenging issue for its biotechnological and bioremediation applications. American Society for Biochemistry and Molecular Biology 2021-08-30 /pmc/articles/PMC8484813/ /pubmed/34473996 http://dx.doi.org/10.1016/j.jbc.2021.101143 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
Kim, Sang-Hoon
Park, Sangyun
Park, Eunyoung
Kim, Jeong-Han
Ghatge, Sunil
Hur, Hor-Gil
Rhee, Sangkee
Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH
title Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH
title_full Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH
title_fullStr Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH
title_full_unstemmed Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH
title_short Structure and substrate specificity determinants of NfnB, a dinitroaniline herbicide–catabolizing nitroreductase from Sphingopyxis sp. strain HMH
title_sort structure and substrate specificity determinants of nfnb, a dinitroaniline herbicide–catabolizing nitroreductase from sphingopyxis sp. strain hmh
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8484813/
https://www.ncbi.nlm.nih.gov/pubmed/34473996
http://dx.doi.org/10.1016/j.jbc.2021.101143
work_keys_str_mv AT kimsanghoon structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh
AT parksangyun structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh
AT parkeunyoung structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh
AT kimjeonghan structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh
AT ghatgesunil structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh
AT hurhorgil structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh
AT rheesangkee structureandsubstratespecificitydeterminantsofnfnbadinitroanilineherbicidecatabolizingnitroreductasefromsphingopyxisspstrainhmh