Cargando…

Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum

Fusobacterium nucleatum is a lesion-associated obligate anaerobic pathogen of destructive periodontal disease; it is also implicated in the progression and severity of colorectal cancer. Four genes (FN0625, FN1055, FN1220, and FN1419) of F. nucleatum are involved in producing hydrogen sulfide (H(2)S...

Descripción completa

Detalles Bibliográficos
Autores principales: Bu, Tingting, Lan, Jing, Jo, Inseong, Zhang, Jie, Bai, Xue, He, Shanru, Jin, Xiaoling, Wang, Lulu, Jin, Yu, Jin, Xiaoyu, Zhang, Liying, Piao, Hailong, Ha, Nam-Chul, Quan, Chunshan, Nam, Ki Hyun, Xu, Yongbin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865163/
https://www.ncbi.nlm.nih.gov/pubmed/36675166
http://dx.doi.org/10.3390/ijms24021651
_version_ 1784875767833821184
author Bu, Tingting
Lan, Jing
Jo, Inseong
Zhang, Jie
Bai, Xue
He, Shanru
Jin, Xiaoling
Wang, Lulu
Jin, Yu
Jin, Xiaoyu
Zhang, Liying
Piao, Hailong
Ha, Nam-Chul
Quan, Chunshan
Nam, Ki Hyun
Xu, Yongbin
author_facet Bu, Tingting
Lan, Jing
Jo, Inseong
Zhang, Jie
Bai, Xue
He, Shanru
Jin, Xiaoling
Wang, Lulu
Jin, Yu
Jin, Xiaoyu
Zhang, Liying
Piao, Hailong
Ha, Nam-Chul
Quan, Chunshan
Nam, Ki Hyun
Xu, Yongbin
author_sort Bu, Tingting
collection PubMed
description Fusobacterium nucleatum is a lesion-associated obligate anaerobic pathogen of destructive periodontal disease; it is also implicated in the progression and severity of colorectal cancer. Four genes (FN0625, FN1055, FN1220, and FN1419) of F. nucleatum are involved in producing hydrogen sulfide (H(2)S), which plays an essential role against oxidative stress. The molecular functions of Fn1419 are known, but their mechanisms remain unclear. We determined the crystal structure of Fn1419 at 2.5 Å, showing the unique conformation of the PLP-binding site when compared with L-methionine γ-lyase (MGL) proteins. Inhibitor screening for Fn1419 with L-cysteine showed that two natural compounds, gallic acid and dihydromyricetin, selectively inhibit the H(2)S production of Fn1419. The chemicals of gallic acid, dihydromyricetin, and its analogs containing trihydroxybenzene, were potentially responsible for the enzyme-inhibiting activity on Fn1419. Molecular docking and mutational analyses suggested that Gly112, Pro159, Val337, and Arg373 are involved in gallic acid binding and positioned close to the substrate and pyridoxal-5′-phosphate-binding site. Gallic acid has little effect on the other H(2)S-producing enzymes (Fn1220 and Fn1055). Overall, we proposed a molecular mechanism underlying the action of Fn1419 from F. nucleatum and found a new lead compound for inhibitor development.
format Online
Article
Text
id pubmed-9865163
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-98651632023-01-22 Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum Bu, Tingting Lan, Jing Jo, Inseong Zhang, Jie Bai, Xue He, Shanru Jin, Xiaoling Wang, Lulu Jin, Yu Jin, Xiaoyu Zhang, Liying Piao, Hailong Ha, Nam-Chul Quan, Chunshan Nam, Ki Hyun Xu, Yongbin Int J Mol Sci Article Fusobacterium nucleatum is a lesion-associated obligate anaerobic pathogen of destructive periodontal disease; it is also implicated in the progression and severity of colorectal cancer. Four genes (FN0625, FN1055, FN1220, and FN1419) of F. nucleatum are involved in producing hydrogen sulfide (H(2)S), which plays an essential role against oxidative stress. The molecular functions of Fn1419 are known, but their mechanisms remain unclear. We determined the crystal structure of Fn1419 at 2.5 Å, showing the unique conformation of the PLP-binding site when compared with L-methionine γ-lyase (MGL) proteins. Inhibitor screening for Fn1419 with L-cysteine showed that two natural compounds, gallic acid and dihydromyricetin, selectively inhibit the H(2)S production of Fn1419. The chemicals of gallic acid, dihydromyricetin, and its analogs containing trihydroxybenzene, were potentially responsible for the enzyme-inhibiting activity on Fn1419. Molecular docking and mutational analyses suggested that Gly112, Pro159, Val337, and Arg373 are involved in gallic acid binding and positioned close to the substrate and pyridoxal-5′-phosphate-binding site. Gallic acid has little effect on the other H(2)S-producing enzymes (Fn1220 and Fn1055). Overall, we proposed a molecular mechanism underlying the action of Fn1419 from F. nucleatum and found a new lead compound for inhibitor development. MDPI 2023-01-13 /pmc/articles/PMC9865163/ /pubmed/36675166 http://dx.doi.org/10.3390/ijms24021651 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. 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 Article
Bu, Tingting
Lan, Jing
Jo, Inseong
Zhang, Jie
Bai, Xue
He, Shanru
Jin, Xiaoling
Wang, Lulu
Jin, Yu
Jin, Xiaoyu
Zhang, Liying
Piao, Hailong
Ha, Nam-Chul
Quan, Chunshan
Nam, Ki Hyun
Xu, Yongbin
Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum
title Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum
title_full Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum
title_fullStr Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum
title_full_unstemmed Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum
title_short Structural Basis of the Inhibition of L-Methionine γ-Lyase from Fusobacterium nucleatum
title_sort structural basis of the inhibition of l-methionine γ-lyase from fusobacterium nucleatum
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9865163/
https://www.ncbi.nlm.nih.gov/pubmed/36675166
http://dx.doi.org/10.3390/ijms24021651
work_keys_str_mv AT butingting structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT lanjing structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT joinseong structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT zhangjie structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT baixue structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT heshanru structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT jinxiaoling structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT wanglulu structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT jinyu structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT jinxiaoyu structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT zhangliying structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT piaohailong structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT hanamchul structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT quanchunshan structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT namkihyun structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum
AT xuyongbin structuralbasisoftheinhibitionoflmethionineglyasefromfusobacteriumnucleatum