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Src homology 3 domain binding kinase 1 protects against hepatic steatosis and insulin resistance through the Nur77-FGF21 pathway.
Ahuja, Palak; Bi, Xinyi; Ng, Chun Fai; Tse, Margaret Chui Ling; Hang, Miaojia; Pang, Brian Pak Shing; Iu, Elsie Chit Yu; Chan, Wing Suen; Ooi, Xin Ci; Sun, Anqi; Herlea-Pana, Oana; Liu, Zhixue; Yang, Xiuying; Jiao, Baowei; Ma, Xin; Wu, Kelvin Ka Lok; Lee, Leo Tsz On; Cheng, Kenneth King Yip; Lee, Chi Wai; Chan, Chi Bun.
Afiliación
  • Ahuja P; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Bi X; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Ng CF; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Tse MCL; School of Biomedical Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Hang M; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Pang BPS; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Iu ECY; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Chan WS; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Ooi XC; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Sun A; School of Biological Sciences , The University of Hong Kong , Hong Kong SAR , China.
  • Herlea-Pana O; Department of Physiology , The University of Oklahoma Health Sciences Center , Oklahoma City , Oklahoma , USA.
  • Liu Z; Center for Molecular & Translational Medicine , Georgia State University , Atlanta , Georgia , USA.
  • Yang X; State Key Laboratory of Bioactive Substance and Function of Natural Medicines and Beijing , Key Laboratory of Drug Target and Screening Research , Institute of Materia Medica of Peking Union Medical College , Beijing , China.
  • Jiao B; State Key Laboratory of Genetic Resources and Evolution , Kunming Institute of Zoology , Chinese Academy of Sciences , Kunming , China.
  • Ma X; Cancer Centre , Faculty of Health Sciences , University of Macau , Taipa, Macau , China.
  • Wu KKL; Department of Health Technology and Informatics , The Hong Kong Polytechnic University , Hong Kong SAR , China.
  • Lee LTO; Cancer Centre , Faculty of Health Sciences , University of Macau , Taipa, Macau , China.
  • Cheng KKY; MOE Frontiers Science Center for Precision Oncology , University of Macau , Taipa, Macau , China.
  • Lee CW; Department of Health Technology and Informatics , The Hong Kong Polytechnic University , Hong Kong SAR , China.
  • Chan CB; School of Biomedical Sciences , The University of Hong Kong , Hong Kong SAR , China.
Hepatology ; 77(1): 213-229, 2023 01 01.
Article en En | MEDLINE | ID: mdl-35363898
BACKGROUND AND AIMS: Metabolism in the liver is dysregulated in obesity, contributing to various health problems including steatosis and insulin resistance. While the pathogenesis of lipid accumulation has been extensively studied, the protective mechanism against lipid challenge in the liver remains unclear. Here, we report that Src homology 3 domain binding kinase 1 (SBK1) is a regulator of hepatic lipid metabolism and systemic insulin sensitivity in response to obesity. APPROACH AND RESULTS: Enhanced Sbk1 expression was found in the liver of high-fat diet (HFD)-induced obese mice and fatty acid (FA)-challenged hepatocytes. SBK1 knockdown in mouse liver cells augmented FA uptake and lipid accumulation. Similarly, liver-specific SBK1 knockout ( Lsko ) mice displayed more severe hepatosteatosis and higher expression of genes in FA uptake and lipogenesis than the Flox/Flox ( Fl/Fl ) control mice when fed the HFD. The HFD-fed Lsko mice also showed symptoms of hyperglycemia, poor systemic glucose tolerance, and lower insulin sensitivity than the Fl/Fl mice. On the other hand, hepatic Sbk1 overexpression alleviated the high-fructose diet-induced hepatosteatosis, hyperlipidemia, and hyperglycemia in mice. White adipose tissue browning was also observed in hepatic SBK1 -overexpressed mice. Moreover, we found that SBK1 was a positive regulator of FGF21 in the liver during energy surplus conditions. Mechanistically, SBK1 phosphorylates the orphan nuclear receptor 4A1 (Nur77) on serine 344 to promote hepatic FGF21 expression and inhibit the transcription of genes involved in lipid anabolism. CONCLUSIONS: Collectively, our data suggest that SBK1 is a regulator of the metabolic adaption against obesity through the Nur77-FGF21 pathway.
Asunto(s)

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Proteínas Quinasas / Resistencia a la Insulina / Hígado Graso Límite: Animals Idioma: En Revista: Hepatology Año: 2023 Tipo del documento: Article País de afiliación: China

Texto completo: 1 Bases de datos: MEDLINE Asunto principal: Proteínas Quinasas / Resistencia a la Insulina / Hígado Graso Límite: Animals Idioma: En Revista: Hepatology Año: 2023 Tipo del documento: Article País de afiliación: China