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Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans

Lysine acetylation, a ubiquitous and dynamic regulatory posttranslational modification (PTM), affects hundreds of proteins across all domains of life. In bacteria, lysine acetylation can be found in many essential pathways, and it is also crucial for bacterial virulence. However, the biological sign...

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Autores principales: Ma, Qizhao, Pan, Yangyang, Chen, Yang, Yu, Shuxing, Huang, Jun, Liu, Yaqi, Gong, Tao, Zhang, Qiong, Sun, Qun, Zou, Jing, Li, Yuqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9600946/
https://www.ncbi.nlm.nih.gov/pubmed/36043788
http://dx.doi.org/10.1128/mbio.02013-22
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author Ma, Qizhao
Pan, Yangyang
Chen, Yang
Yu, Shuxing
Huang, Jun
Liu, Yaqi
Gong, Tao
Zhang, Qiong
Sun, Qun
Zou, Jing
Li, Yuqing
author_facet Ma, Qizhao
Pan, Yangyang
Chen, Yang
Yu, Shuxing
Huang, Jun
Liu, Yaqi
Gong, Tao
Zhang, Qiong
Sun, Qun
Zou, Jing
Li, Yuqing
author_sort Ma, Qizhao
collection PubMed
description Lysine acetylation, a ubiquitous and dynamic regulatory posttranslational modification (PTM), affects hundreds of proteins across all domains of life. In bacteria, lysine acetylation can be found in many essential pathways, and it is also crucial for bacterial virulence. However, the biological significance of lysine acetylation events to bacterial virulence factors remains poorly characterized. In Streptococcus mutans, the acetylome profiles help identify several lysine acetylation sites of lactate dehydrogenase (LDH), which catalyzes the conversion of pyruvate to lactic acid, causing the deterioration of teeth. We investigated the regulatory mechanism of LDH acetylation and characterized the effect of LDH acetylation on its function. We overexpressed the 15 Gcn5 N-acetyltransferases (GNAT) family members in S. mutans and showed that the acetyltransferase ActA impaired its acidogenicity by acetylating LDH. Additionally, enzymatic acetyltransferase reactions demonstrated that purified ActA could acetylate LDH in vitro, and 10 potential lysine acetylation sites of LDH were identified by mass spectrometry, 70% of which were also detected in vivo. We further demonstrated that the lysine acetylation of LDH inhibited its enzymatic activity, and a subsequent rat caries model showed that ActA impaired the cariogenicity of S. mutans. Collectively, we demonstrated that ActA, the first identified and characterized acetyltransferase in S. mutans, acetylated the LDH enzymatically and inhibited its enzymatic activity, thereby providing a starting point for the further analysis of the biological significance of lysine acetylation in the virulence of S. mutans.
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spelling pubmed-96009462022-10-27 Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans Ma, Qizhao Pan, Yangyang Chen, Yang Yu, Shuxing Huang, Jun Liu, Yaqi Gong, Tao Zhang, Qiong Sun, Qun Zou, Jing Li, Yuqing mBio Research Article Lysine acetylation, a ubiquitous and dynamic regulatory posttranslational modification (PTM), affects hundreds of proteins across all domains of life. In bacteria, lysine acetylation can be found in many essential pathways, and it is also crucial for bacterial virulence. However, the biological significance of lysine acetylation events to bacterial virulence factors remains poorly characterized. In Streptococcus mutans, the acetylome profiles help identify several lysine acetylation sites of lactate dehydrogenase (LDH), which catalyzes the conversion of pyruvate to lactic acid, causing the deterioration of teeth. We investigated the regulatory mechanism of LDH acetylation and characterized the effect of LDH acetylation on its function. We overexpressed the 15 Gcn5 N-acetyltransferases (GNAT) family members in S. mutans and showed that the acetyltransferase ActA impaired its acidogenicity by acetylating LDH. Additionally, enzymatic acetyltransferase reactions demonstrated that purified ActA could acetylate LDH in vitro, and 10 potential lysine acetylation sites of LDH were identified by mass spectrometry, 70% of which were also detected in vivo. We further demonstrated that the lysine acetylation of LDH inhibited its enzymatic activity, and a subsequent rat caries model showed that ActA impaired the cariogenicity of S. mutans. Collectively, we demonstrated that ActA, the first identified and characterized acetyltransferase in S. mutans, acetylated the LDH enzymatically and inhibited its enzymatic activity, thereby providing a starting point for the further analysis of the biological significance of lysine acetylation in the virulence of S. mutans. American Society for Microbiology 2022-08-31 /pmc/articles/PMC9600946/ /pubmed/36043788 http://dx.doi.org/10.1128/mbio.02013-22 Text en Copyright © 2022 Ma et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Ma, Qizhao
Pan, Yangyang
Chen, Yang
Yu, Shuxing
Huang, Jun
Liu, Yaqi
Gong, Tao
Zhang, Qiong
Sun, Qun
Zou, Jing
Li, Yuqing
Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans
title Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans
title_full Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans
title_fullStr Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans
title_full_unstemmed Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans
title_short Acetylation of Lactate Dehydrogenase Negatively Regulates the Acidogenicity of Streptococcus mutans
title_sort acetylation of lactate dehydrogenase negatively regulates the acidogenicity of streptococcus mutans
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9600946/
https://www.ncbi.nlm.nih.gov/pubmed/36043788
http://dx.doi.org/10.1128/mbio.02013-22
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