Cargando…
A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study
SfmD is a heme-dependent enzyme in the biosynthetic pathway of saframycin A. Here, we present a 1.78 Å resolution de novo crystal structure of SfmD, which unveils a novel heme cofactor attached to the protein with an unusual Hx(n)HxxxC motif (n ∼ 38). This heme cofactor is unique in two respects. It...
Autores principales: | , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2021
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179489/ https://www.ncbi.nlm.nih.gov/pubmed/34163669 http://dx.doi.org/10.1039/d0sc06369j |
_version_ | 1783703793347592192 |
---|---|
author | Shin, Inchul Davis, Ian Nieves-Merced, Karinel Wang, Yifan McHardy, Stanton Liu, Aimin |
author_facet | Shin, Inchul Davis, Ian Nieves-Merced, Karinel Wang, Yifan McHardy, Stanton Liu, Aimin |
author_sort | Shin, Inchul |
collection | PubMed |
description | SfmD is a heme-dependent enzyme in the biosynthetic pathway of saframycin A. Here, we present a 1.78 Å resolution de novo crystal structure of SfmD, which unveils a novel heme cofactor attached to the protein with an unusual Hx(n)HxxxC motif (n ∼ 38). This heme cofactor is unique in two respects. It contains a single thioether bond in a cysteine–vinyl link with Cys317, and the ferric heme has two axial protein ligands, i.e., His274 and His313. We demonstrated that SfmD heme is catalytically active and can utilize dioxygen and ascorbate for a single-oxygen insertion into 3-methyl-l-tyrosine. Catalytic assays using ascorbate derivatives revealed the functional groups of ascorbate essential to its function as a cosubstrate. Abolishing the thioether linkage through mutation of Cys317 resulted in catalytically inactive SfmD variants. EPR and optical data revealed that the heme center undergoes a substantial conformational change with one axial histidine ligand dissociating from the iron ion in response to substrate 3-methyl-l-tyrosine binding or chemical reduction by a reducing agent, such as the cosubstrate ascorbate. The labile axial ligand was identified as His274 through redox-linked structural determinations. Together, identifying an unusual heme cofactor with a previously unknown heme-binding motif for a monooxygenase activity and the structural similarity of SfmD to the members of the heme-based tryptophan dioxygenase superfamily will broaden understanding of heme chemistry. |
format | Online Article Text |
id | pubmed-8179489 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-81794892021-06-22 A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study Shin, Inchul Davis, Ian Nieves-Merced, Karinel Wang, Yifan McHardy, Stanton Liu, Aimin Chem Sci Chemistry SfmD is a heme-dependent enzyme in the biosynthetic pathway of saframycin A. Here, we present a 1.78 Å resolution de novo crystal structure of SfmD, which unveils a novel heme cofactor attached to the protein with an unusual Hx(n)HxxxC motif (n ∼ 38). This heme cofactor is unique in two respects. It contains a single thioether bond in a cysteine–vinyl link with Cys317, and the ferric heme has two axial protein ligands, i.e., His274 and His313. We demonstrated that SfmD heme is catalytically active and can utilize dioxygen and ascorbate for a single-oxygen insertion into 3-methyl-l-tyrosine. Catalytic assays using ascorbate derivatives revealed the functional groups of ascorbate essential to its function as a cosubstrate. Abolishing the thioether linkage through mutation of Cys317 resulted in catalytically inactive SfmD variants. EPR and optical data revealed that the heme center undergoes a substantial conformational change with one axial histidine ligand dissociating from the iron ion in response to substrate 3-methyl-l-tyrosine binding or chemical reduction by a reducing agent, such as the cosubstrate ascorbate. The labile axial ligand was identified as His274 through redox-linked structural determinations. Together, identifying an unusual heme cofactor with a previously unknown heme-binding motif for a monooxygenase activity and the structural similarity of SfmD to the members of the heme-based tryptophan dioxygenase superfamily will broaden understanding of heme chemistry. The Royal Society of Chemistry 2021-01-22 /pmc/articles/PMC8179489/ /pubmed/34163669 http://dx.doi.org/10.1039/d0sc06369j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Shin, Inchul Davis, Ian Nieves-Merced, Karinel Wang, Yifan McHardy, Stanton Liu, Aimin A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study |
title | A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study |
title_full | A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study |
title_fullStr | A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study |
title_full_unstemmed | A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study |
title_short | A novel catalytic heme cofactor in SfmD with a single thioether bond and a bis-His ligand set revealed by a de novo crystal structural and spectroscopic study |
title_sort | novel catalytic heme cofactor in sfmd with a single thioether bond and a bis-his ligand set revealed by a de novo crystal structural and spectroscopic study |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8179489/ https://www.ncbi.nlm.nih.gov/pubmed/34163669 http://dx.doi.org/10.1039/d0sc06369j |
work_keys_str_mv | AT shininchul anovelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT davisian anovelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT nievesmercedkarinel anovelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT wangyifan anovelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT mchardystanton anovelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT liuaimin anovelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT shininchul novelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT davisian novelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT nievesmercedkarinel novelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT wangyifan novelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT mchardystanton novelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy AT liuaimin novelcatalytichemecofactorinsfmdwithasinglethioetherbondandabishisligandsetrevealedbyadenovocrystalstructuralandspectroscopicstudy |