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Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis

Dysregulation of hepatic VLDL secretion contributes to the pathogenesis of metabolic diseases, such as nonalcoholic fatty liver disease (NAFLD) and hyperlipidemia. Accumulating evidence has suggested that long noncoding RNAs (lncRNAs) had malfunctioning roles in the pathogenesis of NAFLD. However, t...

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Autores principales: Shen, Xuan, Zhang, Yajun, Ji, Xuetao, Li, Bo, Wang, Yuzhu, Huang, Yun, Zhang, Xu, Yu, Jingxian, Zou, Ruihan, Qin, Dongdong, Zhou, Hongwen, Wang, Qian, Li, John Zhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Diabetes Association 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862400/
https://www.ncbi.nlm.nih.gov/pubmed/35771993
http://dx.doi.org/10.2337/db21-1145
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author Shen, Xuan
Zhang, Yajun
Ji, Xuetao
Li, Bo
Wang, Yuzhu
Huang, Yun
Zhang, Xu
Yu, Jingxian
Zou, Ruihan
Qin, Dongdong
Zhou, Hongwen
Wang, Qian
Li, John Zhong
author_facet Shen, Xuan
Zhang, Yajun
Ji, Xuetao
Li, Bo
Wang, Yuzhu
Huang, Yun
Zhang, Xu
Yu, Jingxian
Zou, Ruihan
Qin, Dongdong
Zhou, Hongwen
Wang, Qian
Li, John Zhong
author_sort Shen, Xuan
collection PubMed
description Dysregulation of hepatic VLDL secretion contributes to the pathogenesis of metabolic diseases, such as nonalcoholic fatty liver disease (NAFLD) and hyperlipidemia. Accumulating evidence has suggested that long noncoding RNAs (lncRNAs) had malfunctioning roles in the pathogenesis of NAFLD. However, the function of lncRNAs in controlling hepatic VLDL secretion remains largely unillustrated. Here, we identified a novel lncRNA, lncRNA regulator of hyperlipidemia (lncRHL), which was liver-enriched, downregulated on high-fat diet feeding, and inhibited by oleic acid treatment in primary hepatocytes. With genetic manipulation in mice and primary hepatocytes, depletion of lncRHL induces hepatic VLDL secretion accompanied by decreased hepatic lipid contents. Conversely, lncRHL restoration reduces VLDL secretion with increased lipid deposition in hepatocytes. Mechanistic analyses indicate that lncRHL binds directly to heterogeneous nuclear ribonuclear protein U (hnRNPU), and thereby enhances its stability, and that hnRNPU can transcriptional activate Bmal1, leading to inhibition of VLDL secretion in hepatocytes. lncRHL deficiency accelerates the protein degradation of hnRNPU and suppresses the transcription of Bmal1, which in turn activates VLDL secretion in hepatocytes. With results taken together, we conclude that lncRHL is a novel suppressor of hepatic VLDL secretion. Activating the lncRHL/hnRNPU/BMAL1/MTTP axis represents a potential strategy for the maintenance of intrahepatic and plasma lipid homeostasis.
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spelling pubmed-98624002023-02-03 Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis Shen, Xuan Zhang, Yajun Ji, Xuetao Li, Bo Wang, Yuzhu Huang, Yun Zhang, Xu Yu, Jingxian Zou, Ruihan Qin, Dongdong Zhou, Hongwen Wang, Qian Li, John Zhong Diabetes Metabolism Dysregulation of hepatic VLDL secretion contributes to the pathogenesis of metabolic diseases, such as nonalcoholic fatty liver disease (NAFLD) and hyperlipidemia. Accumulating evidence has suggested that long noncoding RNAs (lncRNAs) had malfunctioning roles in the pathogenesis of NAFLD. However, the function of lncRNAs in controlling hepatic VLDL secretion remains largely unillustrated. Here, we identified a novel lncRNA, lncRNA regulator of hyperlipidemia (lncRHL), which was liver-enriched, downregulated on high-fat diet feeding, and inhibited by oleic acid treatment in primary hepatocytes. With genetic manipulation in mice and primary hepatocytes, depletion of lncRHL induces hepatic VLDL secretion accompanied by decreased hepatic lipid contents. Conversely, lncRHL restoration reduces VLDL secretion with increased lipid deposition in hepatocytes. Mechanistic analyses indicate that lncRHL binds directly to heterogeneous nuclear ribonuclear protein U (hnRNPU), and thereby enhances its stability, and that hnRNPU can transcriptional activate Bmal1, leading to inhibition of VLDL secretion in hepatocytes. lncRHL deficiency accelerates the protein degradation of hnRNPU and suppresses the transcription of Bmal1, which in turn activates VLDL secretion in hepatocytes. With results taken together, we conclude that lncRHL is a novel suppressor of hepatic VLDL secretion. Activating the lncRHL/hnRNPU/BMAL1/MTTP axis represents a potential strategy for the maintenance of intrahepatic and plasma lipid homeostasis. American Diabetes Association 2022-09 2022-06-30 /pmc/articles/PMC9862400/ /pubmed/35771993 http://dx.doi.org/10.2337/db21-1145 Text en © 2022 by the American Diabetes Association https://www.diabetesjournals.org/journals/pages/licenseReaders may use this article as long as the work is properly cited, the use is educational and not for profit, and the work is not altered. More information is available at https://www.diabetesjournals.org/journals/pages/license.
spellingShingle Metabolism
Shen, Xuan
Zhang, Yajun
Ji, Xuetao
Li, Bo
Wang, Yuzhu
Huang, Yun
Zhang, Xu
Yu, Jingxian
Zou, Ruihan
Qin, Dongdong
Zhou, Hongwen
Wang, Qian
Li, John Zhong
Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis
title Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis
title_full Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis
title_fullStr Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis
title_full_unstemmed Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis
title_short Long Noncoding RNA lncRHL Regulates Hepatic VLDL Secretion by Modulating hnRNPU/BMAL1/MTTP Axis
title_sort long noncoding rna lncrhl regulates hepatic vldl secretion by modulating hnrnpu/bmal1/mttp axis
topic Metabolism
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9862400/
https://www.ncbi.nlm.nih.gov/pubmed/35771993
http://dx.doi.org/10.2337/db21-1145
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