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Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells

Lipotoxicity caused by saturated fatty acids (SFAs) induces tissue damage and inflammation in metabolic disorders. SCD1 (stearoyl-coenzyme A desaturase 1) converts SFAs to mono-unsaturated fatty acids (MUFAs) that are incorporated into triglycerides and stored in lipid droplets. SCD1 thus helps prot...

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Autores principales: Sinha, Rohit Anthony, Singh, Brijesh K., Zhou, Jin, Xie, Sherwin, Farah, Benjamin L., Lesmana, Ronny, Ohba, Kenji, Tripathi, Madhulika, Ghosh, Sujoy, Hollenberg, Anthony N., Yen, Paul M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5240836/
https://www.ncbi.nlm.nih.gov/pubmed/27846372
http://dx.doi.org/10.1080/15548627.2016.1235123
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author Sinha, Rohit Anthony
Singh, Brijesh K.
Zhou, Jin
Xie, Sherwin
Farah, Benjamin L.
Lesmana, Ronny
Ohba, Kenji
Tripathi, Madhulika
Ghosh, Sujoy
Hollenberg, Anthony N.
Yen, Paul M.
author_facet Sinha, Rohit Anthony
Singh, Brijesh K.
Zhou, Jin
Xie, Sherwin
Farah, Benjamin L.
Lesmana, Ronny
Ohba, Kenji
Tripathi, Madhulika
Ghosh, Sujoy
Hollenberg, Anthony N.
Yen, Paul M.
author_sort Sinha, Rohit Anthony
collection PubMed
description Lipotoxicity caused by saturated fatty acids (SFAs) induces tissue damage and inflammation in metabolic disorders. SCD1 (stearoyl-coenzyme A desaturase 1) converts SFAs to mono-unsaturated fatty acids (MUFAs) that are incorporated into triglycerides and stored in lipid droplets. SCD1 thus helps protect hepatocytes from lipotoxicity and its reduced expression is associated with increased lipotoxic injury in cultured hepatic cells and mouse models. To further understand the role of SCD1 in lipotoxicity, we examined the regulation of Scd1 in hepatic cells treated with palmitate, and found that NR1H/LXR (nuclear receptor subfamily 1 group H) ligand, GW3965, induced Scd1 expression and lipid droplet formation to improve cell survival. Surprisingly, ULK1/ATG1 (unc-51 like kinase) played a critical role in protecting hepatic cells from SFA-induced lipotoxicity via a novel mechanism that did not involve macroautophagy/autophagy. Specific loss of Ulk1 blocked the induction of Scd1 gene transcription by GW3965, decreased lipid droplet formation, and increased apoptosis in hepatic cells exposed to palmitate. Knockdown of ULK1 increased RPS6KB1 (ribosomal protein S6 kinase, polypeptide 1) signaling that, in turn, induced NCOR1 (nuclear receptor co-repressor 1) nuclear uptake, interaction with NR1H/LXR, and recruitment to the Scd1 promoter. These events abrogated the stimulation of Scd1 gene expression by GW3965, and increased lipotoxicity in hepatic cells. In summary, we have identified a novel autophagy-independent role of ULK1 that regulates NR1H/LXR signaling, Scd1 expression, and intracellular lipid homeostasis in hepatic cells exposed to a lipotoxic environment.
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spelling pubmed-52408362017-01-18 Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells Sinha, Rohit Anthony Singh, Brijesh K. Zhou, Jin Xie, Sherwin Farah, Benjamin L. Lesmana, Ronny Ohba, Kenji Tripathi, Madhulika Ghosh, Sujoy Hollenberg, Anthony N. Yen, Paul M. Autophagy Basic Research Paper Lipotoxicity caused by saturated fatty acids (SFAs) induces tissue damage and inflammation in metabolic disorders. SCD1 (stearoyl-coenzyme A desaturase 1) converts SFAs to mono-unsaturated fatty acids (MUFAs) that are incorporated into triglycerides and stored in lipid droplets. SCD1 thus helps protect hepatocytes from lipotoxicity and its reduced expression is associated with increased lipotoxic injury in cultured hepatic cells and mouse models. To further understand the role of SCD1 in lipotoxicity, we examined the regulation of Scd1 in hepatic cells treated with palmitate, and found that NR1H/LXR (nuclear receptor subfamily 1 group H) ligand, GW3965, induced Scd1 expression and lipid droplet formation to improve cell survival. Surprisingly, ULK1/ATG1 (unc-51 like kinase) played a critical role in protecting hepatic cells from SFA-induced lipotoxicity via a novel mechanism that did not involve macroautophagy/autophagy. Specific loss of Ulk1 blocked the induction of Scd1 gene transcription by GW3965, decreased lipid droplet formation, and increased apoptosis in hepatic cells exposed to palmitate. Knockdown of ULK1 increased RPS6KB1 (ribosomal protein S6 kinase, polypeptide 1) signaling that, in turn, induced NCOR1 (nuclear receptor co-repressor 1) nuclear uptake, interaction with NR1H/LXR, and recruitment to the Scd1 promoter. These events abrogated the stimulation of Scd1 gene expression by GW3965, and increased lipotoxicity in hepatic cells. In summary, we have identified a novel autophagy-independent role of ULK1 that regulates NR1H/LXR signaling, Scd1 expression, and intracellular lipid homeostasis in hepatic cells exposed to a lipotoxic environment. Taylor & Francis 2016-11-15 /pmc/articles/PMC5240836/ /pubmed/27846372 http://dx.doi.org/10.1080/15548627.2016.1235123 Text en © 2017 The Author(s). Published with license by Taylor & Francis http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited. The moral rights of the named author(s) have been asserted.
spellingShingle Basic Research Paper
Sinha, Rohit Anthony
Singh, Brijesh K.
Zhou, Jin
Xie, Sherwin
Farah, Benjamin L.
Lesmana, Ronny
Ohba, Kenji
Tripathi, Madhulika
Ghosh, Sujoy
Hollenberg, Anthony N.
Yen, Paul M.
Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
title Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
title_full Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
title_fullStr Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
title_full_unstemmed Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
title_short Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
title_sort loss of ulk1 increases rps6kb1-ncor1 repression of nr1h/lxr-mediated scd1 transcription and augments lipotoxicity in hepatic cells
topic Basic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5240836/
https://www.ncbi.nlm.nih.gov/pubmed/27846372
http://dx.doi.org/10.1080/15548627.2016.1235123
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