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ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis

E. coli is a ubiquitous pathogen that is responsible for over one million fatalities worldwide on an annual basis. In animals, E. coli can cause a variety of diseases, including mastitis in dairy cattle, which represents a potential public health hazard. However, the pathophysiology of E. coli remai...

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Autores principales: Xu, Haojun, Lin, Changjie, Wang, Chao, Zhao, Tianrui, Yang, Jinghan, Zhang, Junhao, Hu, Yanjun, Qi, Xue, Chen, Xi, Chen, Yingyu, Chen, Jianguo, Guo, Aizhen, Hu, Changmin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670315/
https://www.ncbi.nlm.nih.gov/pubmed/37998339
http://dx.doi.org/10.3390/cells12222604
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author Xu, Haojun
Lin, Changjie
Wang, Chao
Zhao, Tianrui
Yang, Jinghan
Zhang, Junhao
Hu, Yanjun
Qi, Xue
Chen, Xi
Chen, Yingyu
Chen, Jianguo
Guo, Aizhen
Hu, Changmin
author_facet Xu, Haojun
Lin, Changjie
Wang, Chao
Zhao, Tianrui
Yang, Jinghan
Zhang, Junhao
Hu, Yanjun
Qi, Xue
Chen, Xi
Chen, Yingyu
Chen, Jianguo
Guo, Aizhen
Hu, Changmin
author_sort Xu, Haojun
collection PubMed
description E. coli is a ubiquitous pathogen that is responsible for over one million fatalities worldwide on an annual basis. In animals, E. coli can cause a variety of diseases, including mastitis in dairy cattle, which represents a potential public health hazard. However, the pathophysiology of E. coli remains unclear. We found that E. coli could induce global upregulation of m(6)A methylation and cause serious apoptosis in bovine mammary epithelial cells (MAC-T cells). Furthermore, numerous m(6)A-modified lncRNAs were identified through MeRIP-seq. Interestingly, we found that the expression of LOC4191 with hypomethylation increased in MAC-T cells upon E. coli-induced apoptosis. Knocking down LOC4191 promoted E. coli-induced apoptosis and ROS levels through the caspase 3–PARP pathway. Meanwhile, knocking down ALKBH5 resulted in the promotion of apoptosis through upregulated ROS and arrested the cell cycle in MAC-T cells. ALKBH5 silencing accelerated LOC4191 decay by upregulating its m(6)A modification level, and the process was recognized by hnRNP A1. Therefore, this indicates that ALKBH5 stabilizes m(6)A-modified LOC4191 to suppress E. coli-induced apoptosis. This report discusses an initial investigation into the mechanism of m(6)A-modified lncRNA in cells under E. coli-induced apoptosis and provides novel insights into infectious diseases.
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spelling pubmed-106703152023-11-10 ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis Xu, Haojun Lin, Changjie Wang, Chao Zhao, Tianrui Yang, Jinghan Zhang, Junhao Hu, Yanjun Qi, Xue Chen, Xi Chen, Yingyu Chen, Jianguo Guo, Aizhen Hu, Changmin Cells Article E. coli is a ubiquitous pathogen that is responsible for over one million fatalities worldwide on an annual basis. In animals, E. coli can cause a variety of diseases, including mastitis in dairy cattle, which represents a potential public health hazard. However, the pathophysiology of E. coli remains unclear. We found that E. coli could induce global upregulation of m(6)A methylation and cause serious apoptosis in bovine mammary epithelial cells (MAC-T cells). Furthermore, numerous m(6)A-modified lncRNAs were identified through MeRIP-seq. Interestingly, we found that the expression of LOC4191 with hypomethylation increased in MAC-T cells upon E. coli-induced apoptosis. Knocking down LOC4191 promoted E. coli-induced apoptosis and ROS levels through the caspase 3–PARP pathway. Meanwhile, knocking down ALKBH5 resulted in the promotion of apoptosis through upregulated ROS and arrested the cell cycle in MAC-T cells. ALKBH5 silencing accelerated LOC4191 decay by upregulating its m(6)A modification level, and the process was recognized by hnRNP A1. Therefore, this indicates that ALKBH5 stabilizes m(6)A-modified LOC4191 to suppress E. coli-induced apoptosis. This report discusses an initial investigation into the mechanism of m(6)A-modified lncRNA in cells under E. coli-induced apoptosis and provides novel insights into infectious diseases. MDPI 2023-11-10 /pmc/articles/PMC10670315/ /pubmed/37998339 http://dx.doi.org/10.3390/cells12222604 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
Xu, Haojun
Lin, Changjie
Wang, Chao
Zhao, Tianrui
Yang, Jinghan
Zhang, Junhao
Hu, Yanjun
Qi, Xue
Chen, Xi
Chen, Yingyu
Chen, Jianguo
Guo, Aizhen
Hu, Changmin
ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis
title ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis
title_full ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis
title_fullStr ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis
title_full_unstemmed ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis
title_short ALKBH5 Stabilized N(6)-Methyladenosine—Modified LOC4191 to Suppress E. coli-Induced Apoptosis
title_sort alkbh5 stabilized n(6)-methyladenosine—modified loc4191 to suppress e. coli-induced apoptosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10670315/
https://www.ncbi.nlm.nih.gov/pubmed/37998339
http://dx.doi.org/10.3390/cells12222604
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