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Suppression of hepatic lipogenic gene expression by hepatic stearoyl‐CoA desaturase‐1 deficiency is mediated in part by adiponectin through liver‐adipose crosstalk
Author(s) -
Liu Zhaojin,
O'Neill Lucas,
Ntambi James
Publication year - 2021
Publication title -
the faseb journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.709
H-Index - 277
eISSN - 1530-6860
pISSN - 0892-6638
DOI - 10.1096/fasebj.2021.35.s1.04042
Subject(s) - lipogenesis , medicine , adipose tissue , endocrinology , fatty acid synthase , adiponectin , adipocyte , steatosis , carbohydrate responsive element binding protein , adipokine , chemistry , biology , hepatocyte , stearoyl coa desaturase , sterol regulatory element binding protein , gene expression , gene , insulin resistance , lipid metabolism , biochemistry , insulin , transcription factor , cholesterol , sterol , in vitro
Stearoyl‐CoA desaturase‐1 (SCD1) catalyzes the rate‐limiting step in the biosynthesis of monounsaturated acids. Hepatic deletion of Scd1 protects mice from high‐carbohydrate diet‐induced hepatic steatosis and adiposity in part by suppressing hepatic lipogenesis, increasing adipose tissue lipogenesis, and increasing systemic glucose uptake. However, the mechanism leading to these phenotypes is unclear. Deletion of Scd1 in cultured AML12 hepatocytes does not recapitulate decreased lipogenic gene expression, which indicates that an extrahepatic messenger is required. In mice lacking hepatic Scd1 , expression of adiponectin ( AdipoQ ), an adipokine, is significantly elevated in the adipose tissue and blood. Therefore, we hypothesized that crosstalk between liver and adipose tissue is required to suppress hepatic lipogenesis and that adipose tissue‐derived ADIPOQ is the messenger. Here we show, that co‐culturing Scd1 deficient AML12 hepatocytes with fully differentiated 3T3‐L1 adipocytes, induces the expression of AdipoQ , fatty acid synthase ( Fasn ), and carbohydrate response element‐binding protein ( ChREBP ) in the adipocyte fraction and suppresses the lipogenic genes, sterol regulatory element‐binding protein‐1c ( Srebp1c ) and Fasn in the hepatocyte fraction. Furthermore, we show that treating HepG2 cells with ADIPOQ suppresses the lipogenic genes SREBP1c , FASN , and ChREBP compared to control cells. In conclusion, our results suggest that liver‐adipose crosstalk mediates hepatic lipogenic gene expression in mice lacking hepatic Scd1 .