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Liver Pyruvate Kinase Promotes NAFLD/NASH in Both Mice and Humans in a Sex-Specific Manner

Authors :
Aldons J. Lusis
Raquel Floyd
Simon Sabir
Miklós Péterfy
Paola León-Mimila
Anthony E. Jones
Linsey Stiles
Dulshan W. Jayasekera
Samuel Canizales-Quinteros
Adriana Huertas-Vazquez
Varun Shravah
Angel A. Cortez
Karthickeyan Chella Krishnan
Ajit S. Divakaruni
Source :
Cellular and Molecular Gastroenterology and Hepatology, Cellular and molecular gastroenterology and hepatology, vol 11, iss 2
Publication Year :
2020
Publisher :
Elsevier, 2020.

Abstract

Background & Aims The etiology of nonalcoholic fatty liver disease (NAFLD) is poorly understood, with males and certain populations exhibiting markedly increased susceptibility. Using a systems genetics approach involving multi-omic analysis of ∼100 diverse inbred strains of mice, we recently identified several candidate genes driving NAFLD. We investigated the role of one of these, liver pyruvate kinase (L-PK or Pklr), in NAFLD by using patient samples and mouse models. Methods We examined L-PK expression in mice of both sexes and in a cohort of bariatric surgery patients. We used liver-specific loss- and gain-of-function strategies in independent animal models of diet-induced steatosis and fibrosis. After treatment, we measured several metabolic phenotypes including obesity, insulin resistance, dyslipidemia, liver steatosis, and fibrosis. Liver tissues were used for gene expression and immunoblotting, and liver mitochondria bioenergetics was characterized. Results In both mice and humans, L-PK expression is up-regulated in males via testosterone and is strongly associated with NAFLD severity. In a steatosis model, L-PK silencing in male mice improved glucose tolerance, insulin sensitivity, and lactate/pyruvate tolerance compared with controls. Furthermore, these animals had reduced plasma cholesterol levels and intrahepatic triglyceride accumulation. Conversely, L-PK overexpression in male mice resulted in augmented disease phenotypes. In contrast, female mice overexpressing L-PK were unaffected. Mechanistically, L-PK altered mitochondrial pyruvate flux and its incorporation into citrate, and this, in turn, increased liver triglycerides via up-regulated de novo lipogenesis and increased PNPLA3 levels accompanied by mitochondrial dysfunction. Also, L-PK increased plasma cholesterol levels via increased PCSK9 levels. On the other hand, L-PK silencing reduced de novo lipogenesis and PNPLA3 and PCSK9 levels and improved mitochondrial function. Finally, in fibrosis model, we demonstrate that L-PK silencing in male mice reduced both liver steatosis and fibrosis, accompanied by reduced de novo lipogenesis and improved mitochondrial function. Conclusions L-PK acts in a male-specific manner in the development of liver steatosis and fibrosis. Because NAFLD/nonalcoholic steatohepatitis exhibit sexual dimorphism, our results have important implications for the development of personalized therapeutics.<br />Graphical abstract

Subjects

Subjects :
0301 basic medicine
HMDP, Hybrid Mouse Diversity Panel
Male
OXPHOS, oxidative phosphorylation
Mitochondrion
HF/HS diet, diet rich in fat and sucrose
CDAHFD, choline-deficient, L-amino acid-defined, high-fat diet with 0.1% methionine
Oral and gastrointestinal
Hepatitis
LPK, liver pyruvate kinase
Mice
0302 clinical medicine
GGT, gamma-glutamyl transpeptidase
Fibrosis
Loss of Function Mutation
Non-alcoholic Fatty Liver Disease
Nonalcoholic fatty liver disease
2.1 Biological and endogenous factors
Aetiology
scrRNA, scrambled RNA
Original Research
CE, cholesteryl ester
TG, triglyceride
Liver Disease
NAS, NAFLD Activity Score
Gastroenterology
Middle Aged
Up-Regulation
Liver
Gain of Function Mutation
Lipogenesis
Mitochondrial Dysfunction
shRNA, short hairpin RNA
Liver Fibrosis
qPCR, quantitative polymerase chain reaction
030211 gastroenterology & hepatology
Female
NASH, nonalcoholic steatohepatitis
ITT, insulin tolerance tests
L/PTT, lactate/pyruvate tolerance tests
Adult
medicine.medical_specialty
DEGs, differentially expressed genes
Chronic Liver Disease and Cirrhosis
ETC, electron transport chain
HDL, high-density lipoprotein
Pyruvate Kinase
DNL, de novo lipogenesis
SEM, standard error of the mean
03 medical and health sciences
Insulin resistance
ROS, reactive oxygen species
Sex Factors
Liver Pyruvate Kinase
Internal medicine
NAFLD
AAV8, adeno-associated virus serotype 8
FFA, free fatty acid
Genetics
medicine
Animals
Humans
Genetic Predisposition to Disease
Obesity
Gene Silencing
Sex Differences
Metabolic and endocrine
TBG, thyroxine binding globulin
Nutrition
Hepatology
Animal
business.industry
Gene Expression Profiling
medicine.disease
TC, total cholesterol
Disease Models, Animal
030104 developmental biology
Endocrinology
siRNA, small interfering RNA
Disease Models
NAFLD, nonalcoholic fatty liver disease
Steatosis
Digestive Diseases
business
Dyslipidemia
Pyruvate kinase
GTT, glucose tolerance tests

Details

Language :
English
ISSN :
2352345X
Volume :
11
Issue :
2
Database :
OpenAIRE
Journal :
Cellular and Molecular Gastroenterology and Hepatology
Accession number :
edsair.doi.dedup.....cd4127e52760363929df8a11fd651eca