Cargando…

Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis

Complement is known to play a role in alcoholic fatty liver disease (AFLD), but the underlying mechanisms are poorly understood, thereby constraining the development of a rational approach for therapeutic intervention in the complement system. C3 deficiency has been shown to impart protective effect...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhong, Fudi, Hu, Zhigao, Jiang, Keqing, Lei, Biao, Wu, Zhan, Yuan, Guandou, Luo, Hongliang, Dong, Chunqiang, Tang, Bo, Zheng, Chaowen, Yang, Shuai, Zeng, Yonglian, Guo, Zhenya, Yu, Shuiping, Su, Huizhao, Zhang, Guo, Qiu, Xiaoqiang, Tomlinson, Stephen, He, Songqing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6796853/
https://www.ncbi.nlm.nih.gov/pubmed/31076642
http://dx.doi.org/10.1038/s41422-019-0175-2
_version_ 1783459705138446336
author Zhong, Fudi
Hu, Zhigao
Jiang, Keqing
Lei, Biao
Wu, Zhan
Yuan, Guandou
Luo, Hongliang
Dong, Chunqiang
Tang, Bo
Zheng, Chaowen
Yang, Shuai
Zeng, Yonglian
Guo, Zhenya
Yu, Shuiping
Su, Huizhao
Zhang, Guo
Qiu, Xiaoqiang
Tomlinson, Stephen
He, Songqing
author_facet Zhong, Fudi
Hu, Zhigao
Jiang, Keqing
Lei, Biao
Wu, Zhan
Yuan, Guandou
Luo, Hongliang
Dong, Chunqiang
Tang, Bo
Zheng, Chaowen
Yang, Shuai
Zeng, Yonglian
Guo, Zhenya
Yu, Shuiping
Su, Huizhao
Zhang, Guo
Qiu, Xiaoqiang
Tomlinson, Stephen
He, Songqing
author_sort Zhong, Fudi
collection PubMed
description Complement is known to play a role in alcoholic fatty liver disease (AFLD), but the underlying mechanisms are poorly understood, thereby constraining the development of a rational approach for therapeutic intervention in the complement system. C3 deficiency has been shown to impart protective effects against ethanol-induced hepatic steatosis and inflammation. Here we demonstrate a protection effect in wild-type mice by treatment with CR2-Crry, a specific inhibitor of C3 activation. The expression of glycine transfer (t) RNA-derived fragments (Gly-tRFs) is upregulated in ethanol-fed mice and inhibition of Gly-tRFs in vivo decreases chronic ethanol feeding-induced hepatosteatosis without affecting inflammation. The expression of Gly-tRF was downregulated in C3-deficient or CR2-Crry-treated mice, but not in C5-deficient mice; Gly-tRF expression was restored by the C3 activation products C3a or Asp (C3a-des-Arg) via the regulation of CYP2E1. Transcriptome profiling of hepatic tissues showed that Gly-tRF inhibitors upregulate the expression of sirtuin1 (Sirt1) and subsequently affect downstream lipogenesis and β-oxidation pathways. Mechanistically, Gly-tRF interacts with AGO3 to downregulate Sirt1 expression via sequence complementarity in the 3′ UTR. Notably, the expression levels of C3d, CYP2E1 and Gly-tRF are upregulated, whereas Sirt1 is decreased in AFLD patients compared to healthy controls. Collectively, our findings suggest that C3 activation products contribute to hepatosteatosis by regulating the expression of Gly-tRF. Complement inhibition at the C3 activation step and treatment with Gly-tRF inhibitors may be potential and precise therapeutic approaches for AFLD.
format Online
Article
Text
id pubmed-6796853
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher Nature Publishing Group UK
record_format MEDLINE/PubMed
spelling pubmed-67968532019-10-18 Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis Zhong, Fudi Hu, Zhigao Jiang, Keqing Lei, Biao Wu, Zhan Yuan, Guandou Luo, Hongliang Dong, Chunqiang Tang, Bo Zheng, Chaowen Yang, Shuai Zeng, Yonglian Guo, Zhenya Yu, Shuiping Su, Huizhao Zhang, Guo Qiu, Xiaoqiang Tomlinson, Stephen He, Songqing Cell Res Article Complement is known to play a role in alcoholic fatty liver disease (AFLD), but the underlying mechanisms are poorly understood, thereby constraining the development of a rational approach for therapeutic intervention in the complement system. C3 deficiency has been shown to impart protective effects against ethanol-induced hepatic steatosis and inflammation. Here we demonstrate a protection effect in wild-type mice by treatment with CR2-Crry, a specific inhibitor of C3 activation. The expression of glycine transfer (t) RNA-derived fragments (Gly-tRFs) is upregulated in ethanol-fed mice and inhibition of Gly-tRFs in vivo decreases chronic ethanol feeding-induced hepatosteatosis without affecting inflammation. The expression of Gly-tRF was downregulated in C3-deficient or CR2-Crry-treated mice, but not in C5-deficient mice; Gly-tRF expression was restored by the C3 activation products C3a or Asp (C3a-des-Arg) via the regulation of CYP2E1. Transcriptome profiling of hepatic tissues showed that Gly-tRF inhibitors upregulate the expression of sirtuin1 (Sirt1) and subsequently affect downstream lipogenesis and β-oxidation pathways. Mechanistically, Gly-tRF interacts with AGO3 to downregulate Sirt1 expression via sequence complementarity in the 3′ UTR. Notably, the expression levels of C3d, CYP2E1 and Gly-tRF are upregulated, whereas Sirt1 is decreased in AFLD patients compared to healthy controls. Collectively, our findings suggest that C3 activation products contribute to hepatosteatosis by regulating the expression of Gly-tRF. Complement inhibition at the C3 activation step and treatment with Gly-tRF inhibitors may be potential and precise therapeutic approaches for AFLD. Nature Publishing Group UK 2019-05-10 2019-07 /pmc/articles/PMC6796853/ /pubmed/31076642 http://dx.doi.org/10.1038/s41422-019-0175-2 Text en © The Author(s) 2019 Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Zhong, Fudi
Hu, Zhigao
Jiang, Keqing
Lei, Biao
Wu, Zhan
Yuan, Guandou
Luo, Hongliang
Dong, Chunqiang
Tang, Bo
Zheng, Chaowen
Yang, Shuai
Zeng, Yonglian
Guo, Zhenya
Yu, Shuiping
Su, Huizhao
Zhang, Guo
Qiu, Xiaoqiang
Tomlinson, Stephen
He, Songqing
Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis
title Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis
title_full Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis
title_fullStr Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis
title_full_unstemmed Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis
title_short Complement C3 activation regulates the production of tRNA-derived fragments Gly-tRFs and promotes alcohol-induced liver injury and steatosis
title_sort complement c3 activation regulates the production of trna-derived fragments gly-trfs and promotes alcohol-induced liver injury and steatosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6796853/
https://www.ncbi.nlm.nih.gov/pubmed/31076642
http://dx.doi.org/10.1038/s41422-019-0175-2
work_keys_str_mv AT zhongfudi complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT huzhigao complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT jiangkeqing complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT leibiao complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT wuzhan complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT yuanguandou complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT luohongliang complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT dongchunqiang complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT tangbo complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT zhengchaowen complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT yangshuai complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT zengyonglian complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT guozhenya complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT yushuiping complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT suhuizhao complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT zhangguo complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT qiuxiaoqiang complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT tomlinsonstephen complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis
AT hesongqing complementc3activationregulatestheproductionoftrnaderivedfragmentsglytrfsandpromotesalcoholinducedliverinjuryandsteatosis