Cargando…

LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism

Sepsis is an often‐deadly complication of infection that can lead to multiple organ failure. Previous studies have demonstrated that autophagy has a protective effect on liver injury in sepsis. Here, we report a novel long noncoding RNA (lncRNA), named lipopolysaccharide (LPS)‐induced liver autophag...

Descripción completa

Detalles Bibliográficos
Autores principales: Tian, Tian, Li, Shan, Luo, Haihua, Li, Yijing, Chen, Hanghang, Yang, Ying, Chen, Guangqin, Xie, Bingyao, Yan, Zhengzheng, Wang, Zhenqi, Li, Lei, Jiang, Yong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10565381/
https://www.ncbi.nlm.nih.gov/pubmed/37829506
http://dx.doi.org/10.1002/mco2.398
_version_ 1785118682880409600
author Tian, Tian
Li, Shan
Luo, Haihua
Li, Yijing
Chen, Hanghang
Yang, Ying
Chen, Guangqin
Xie, Bingyao
Yan, Zhengzheng
Wang, Zhenqi
Li, Lei
Jiang, Yong
author_facet Tian, Tian
Li, Shan
Luo, Haihua
Li, Yijing
Chen, Hanghang
Yang, Ying
Chen, Guangqin
Xie, Bingyao
Yan, Zhengzheng
Wang, Zhenqi
Li, Lei
Jiang, Yong
author_sort Tian, Tian
collection PubMed
description Sepsis is an often‐deadly complication of infection that can lead to multiple organ failure. Previous studies have demonstrated that autophagy has a protective effect on liver injury in sepsis. Here, we report a novel long noncoding RNA (lncRNA), named lipopolysaccharide (LPS)‐induced liver autophagy regulator (LILAR), which was highly induced in the liver tissues of endotoxemic mice. LILAR deficiency significantly increased the susceptibility of mice to LPS. In contrast, LILAR overexpression rescued the liver injury mediated by LILAR deficiency and increased the survival of LILAR knockout mice with endotoxemia. Autophagy‐related protein 13 (Atg13) is a potential downstream target gene of LILAR. LILAR deficiency notably decreased Atg13 expression and suppressed autophagy in the livers of mice challenged with LPS. A reporter gene assay showed that LILAR competitively adsorbed miR‐705 to increase the expression of Atg13 in cultured cells, indicating that LILAR participates in the regulation of the autophagy in the liver tissues of endotoxemic mice through a competitive endogenous RNA mechanism. In summary, we identified a novel lncRNA, LILAR, as a hepatic autophagy regulator, which not only promotes our understanding of liver pathophysiology but also provides a potential therapeutic target and/or diagnostic biomarker for liver injury in endotoxemia.
format Online
Article
Text
id pubmed-10565381
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-105653812023-10-12 LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism Tian, Tian Li, Shan Luo, Haihua Li, Yijing Chen, Hanghang Yang, Ying Chen, Guangqin Xie, Bingyao Yan, Zhengzheng Wang, Zhenqi Li, Lei Jiang, Yong MedComm (2020) Original Articles Sepsis is an often‐deadly complication of infection that can lead to multiple organ failure. Previous studies have demonstrated that autophagy has a protective effect on liver injury in sepsis. Here, we report a novel long noncoding RNA (lncRNA), named lipopolysaccharide (LPS)‐induced liver autophagy regulator (LILAR), which was highly induced in the liver tissues of endotoxemic mice. LILAR deficiency significantly increased the susceptibility of mice to LPS. In contrast, LILAR overexpression rescued the liver injury mediated by LILAR deficiency and increased the survival of LILAR knockout mice with endotoxemia. Autophagy‐related protein 13 (Atg13) is a potential downstream target gene of LILAR. LILAR deficiency notably decreased Atg13 expression and suppressed autophagy in the livers of mice challenged with LPS. A reporter gene assay showed that LILAR competitively adsorbed miR‐705 to increase the expression of Atg13 in cultured cells, indicating that LILAR participates in the regulation of the autophagy in the liver tissues of endotoxemic mice through a competitive endogenous RNA mechanism. In summary, we identified a novel lncRNA, LILAR, as a hepatic autophagy regulator, which not only promotes our understanding of liver pathophysiology but also provides a potential therapeutic target and/or diagnostic biomarker for liver injury in endotoxemia. John Wiley and Sons Inc. 2023-10-10 /pmc/articles/PMC10565381/ /pubmed/37829506 http://dx.doi.org/10.1002/mco2.398 Text en © 2023 The Authors. MedComm published by Sichuan International Medical Exchange & Promotion Association (SCIMEA) and John Wiley & Sons Australia, Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Tian, Tian
Li, Shan
Luo, Haihua
Li, Yijing
Chen, Hanghang
Yang, Ying
Chen, Guangqin
Xie, Bingyao
Yan, Zhengzheng
Wang, Zhenqi
Li, Lei
Jiang, Yong
LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism
title LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism
title_full LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism
title_fullStr LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism
title_full_unstemmed LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism
title_short LILAR, a novel long noncoding RNA regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous RNA mechanism
title_sort lilar, a novel long noncoding rna regulating autophagy in the liver tissues of endotoxemic mice through a competing endogenous rna mechanism
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10565381/
https://www.ncbi.nlm.nih.gov/pubmed/37829506
http://dx.doi.org/10.1002/mco2.398
work_keys_str_mv AT tiantian lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT lishan lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT luohaihua lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT liyijing lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT chenhanghang lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT yangying lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT chenguangqin lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT xiebingyao lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT yanzhengzheng lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT wangzhenqi lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT lilei lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism
AT jiangyong lilaranovellongnoncodingrnaregulatingautophagyinthelivertissuesofendotoxemicmicethroughacompetingendogenousrnamechanism