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Membrane-Bound sn-1,2-Diacylglycerols Explain the Dissociation of Hepatic Insulin Resistance from Hepatic Steatosis in MTTP Knockout Mice

Authors :
Fisiología
Fisiologia
Abulizi, Abudukadier
Vatner, Daniel F.
Ye, Zhang
Wang, Yongliang
Camporez, Joao Paulo
Zhang, Dongyan
Kahn, Mario
Lyu, Kun
Sirwi, Alaa
Cline, Gary W.
Hussain, M. Mahmood
Aspichueta Celaá, Patricia
Samuel, Varman T.
Shulman, Gerald I.
Fisiología
Fisiologia
Abulizi, Abudukadier
Vatner, Daniel F.
Ye, Zhang
Wang, Yongliang
Camporez, Joao Paulo
Zhang, Dongyan
Kahn, Mario
Lyu, Kun
Sirwi, Alaa
Cline, Gary W.
Hussain, M. Mahmood
Aspichueta Celaá, Patricia
Samuel, Varman T.
Shulman, Gerald I.
Publication Year :
2020

Abstract

Microsomal triglyceride transfer protein (MTTP) deficiency results in a syndrome of hypolipidemia and accelerated NAFLD. Animal models of decreased hepatic MTTP activity have revealed an unexplained dissociation between hepatic steatosis and hepatic insulin resistance. Here, we performed comprehensive metabolic phenotyping of liver-specific MTTP knockout (L-Mttp(-/-)) mice and age-weight matched wild-type control mice. Young (10-12-week-old) L-Mttp(-/-) mice exhibited hepatic steatosis and increased DAG content; however, the increase in hepatic DAG content was partitioned to the lipid droplet and was not increased in the plasma membrane. Young L-Mttp(-/-) mice also manifested normal hepatic insulin sensitivity, as assessed by hyperinsulinemic-euglycemic clamps, no PKC epsilon activation, and normal hepatic insulin signaling from the insulin receptor through AKT Ser/Thr kinase. In contrast, aged (10-month-old) L-Mttp(-/-) mice exhibited glucose intolerance and hepatic insulin resistance along with an increase in hepatic plasma membrane sn-1,2-DAG content and PKC epsilon activation. Treatment with a functionally liver-targeted mitochondrial uncoupler protected the aged L-Mttp(-/-) mice against the development of hepatic steatosis, increased plasma membrane sn-1,2-DAG content, PKC epsilon activation, and hepatic insulin resistance. Furthermore, increased hepatic insulin sensitivity in the aged controlled-release mitochondrial protonophore-treated L-Mttp(-/-) mice was not associated with any reductions in hepatic ceramide content. Taken together, these data demonstrate that differences in the intracellular compartmentation of sn-1,2-DAGs in the lipid droplet versus plasma membrane explains the dissociation of NAFLD/lipid-induced hepatic insulin resistance in young L-Mttp(-/-) mice as well as the development of lipid-induced hepatic insulin resistance in aged L-Mttp(-/-) mice

Details

Database :
OAIster
Notes :
This work was supported by National Institutes of Health Grants R01 DK116774, R01 DK119968, R01 DK114793, R01 DK113984, K23 DK10287, P30 DK045735, DK121490, and HL137202 and the Veterans Health Administration Merit Review Awards I01 BX000901 and BX004113. The content is solely the responsibility of the authors and does not necessarily represent the official views of the National Institutes of Health or the U.S. Department of Veterans Affairs, English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1256624708
Document Type :
Electronic Resource