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- TANK-Binding Kinase 1 Regulates the Localization of Acyl-CoA Synthetase ACSL1 to Control Hepatic Fatty Acid Oxidation.
TANK-Binding Kinase 1 Regulates the Localization of Acyl-CoA Synthetase ACSL1 to Control Hepatic Fatty Acid Oxidation.
Citation | “Tank-Binding Kinase 1 Regulates The Localization Of Acyl-Coa Synthetase Acsl1 To Control Hepatic Fatty Acid Oxidation.”. Cell Metabolism, pp. 1012-1027.e7. . |
Center | UCSD-UCLA |
Author | Jin Young Huh, Shannon M Reilly, Mohammad Abu-Odeh, Anne N Murphy, Sushil K Mahata, Jinyu Zhang, Yoori Cho, Jong Bae Seo, Chao-Wei Hung, Courtney R Green, Christian M Metallo, Alan R Saltiel |
Keywords | acyl-CoA synthetase long-chain family member 1 (ACSL1), fasting, Hepatic lipid metabolism, mitochondria, nonalcoholic fatty liver disease (NAFLD), re-esterification, tank-binding kinase 1 (TBK1), β-oxidation |
Abstract |
Hepatic TANK (TRAF family member associated NFκB activator)-binding kinase 1 (TBK1) activity is increased during obesity, and administration of a TBK1 inhibitor reduces fatty liver. Surprisingly, liver-specific TBK1 knockout in mice produces fatty liver by reducing fatty acid oxidation. TBK1 functions as a scaffolding protein to localize acyl-CoA synthetase long-chain family member 1 (ACSL1) to mitochondria, which generates acyl-CoAs that are channeled for β-oxidation. TBK1 is induced during fasting and maintained in the unphosphorylated, inactive state, enabling its high affinity binding to ACSL1 in mitochondria. In TBK1-deficient liver, ACSL1 is shifted to the endoplasmic reticulum to promote fatty acid re-esterification in lieu of oxidation in response to fasting, which accelerates hepatic lipid accumulation. The impaired fatty acid oxidation in TBK1-deficient hepatocytes is rescued by the expression of kinase-dead TBK1. Thus, TBK1 operates as a rheostat to direct the fate of fatty acids in hepatocytes, supporting oxidation when inactive during fasting and promoting re-esterification when activated during obesity. |
Year of Publication |
2020
|
Journal |
Cell metabolism
|
Volume |
32
|
Issue |
6
|
Number of Pages |
1012-1027.e7
|
Date Published |
12/2020
|
ISSN Number |
1932-7420
|
DOI |
10.1016/j.cmet.2020.10.010
|
Alternate Journal |
Cell Metab
|
PMID |
33152322
|
PMCID |
PMC7710607
|
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