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LRRK2 Regulates CPT1A to Promote ?-Oxidation in HepG2 Cells.


ABSTRACT: Leucine-rich repeat kinase 2 (LRRK2) is involved in lipid metabolism; however, the role of LRRK2 in lipid metabolism to affect non-alcoholic fatty liver disease (NAFLD) is still unclear. In the mouse model of NAFLD induced by a high-fat diet, we observed that LRRK2 was decreased in livers. In HepG2 cells, exposure to palmitic acid (PA) down-regulated LRRK2. Overexpression and knockdown of LRRK2 in HepG2 cells were performed to further investigate the roles of LRRK2 in lipid metabolism. Our results showed that ?-oxidation in HepG2 cells was promoted by LRRK2 overexpression, whereas LRRK2 knockdown inhibited ?-oxidation. The critical enzyme of ?-oxidation, carnitine palmitoyltransferase 1A (CPT1A), was positively regulated by LRRK2. Our data suggested that the regulation of CPT1A by LRRK2 may be via the activation of AMP-activated protein kinase (AMPK) and peroxisome proliferator-activated receptor ? (PPAR?). The overexpression of LRRK2 reduced the concentration of a pro-inflammatory cytokine, tumor necrosis factor ? (TNF?), induced by PA. The increase in ?-oxidation may promote lipid catabolism to suppress inflammation induced by PA. These results indicated that LRRK2 participated in the regulation of ?-oxidation and suggested that the decreased LRRK2 may promote inflammation by suppressing ?-oxidation in the liver.

SUBMITTER: Lin CW 

PROVIDER: S-EPMC7570678 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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LRRK2 Regulates CPT1A to Promote β-Oxidation in HepG2 Cells.

Lin Chiao-Wei CW   Peng Yu-Ju YJ   Lin Yuan-Yu YY   Mersmann Harry John HJ   Ding Shih-Torng ST  

Molecules (Basel, Switzerland) 20200909 18


Leucine-rich repeat kinase 2 (LRRK2) is involved in lipid metabolism; however, the role of LRRK2 in lipid metabolism to affect non-alcoholic fatty liver disease (NAFLD) is still unclear. In the mouse model of NAFLD induced by a high-fat diet, we observed that LRRK2 was decreased in livers. In HepG2 cells, exposure to palmitic acid (PA) down-regulated LRRK2. Overexpression and knockdown of LRRK2 in HepG2 cells were performed to further investigate the roles of LRRK2 in lipid metabolism. Our resul  ...[more]

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