Literature DB >> 25736301

Role of fibroblast growth factor 21 in the early stage of NASH induced by methionine- and choline-deficient diet.

Naoki Tanaka1, Shogo Takahashi2, Yuan Zhang3, Kristopher W Krausz2, Philip B Smith4, Andrew D Patterson4, Frank J Gonzalez5.   

Abstract

Fibroblast growth factor 21 (FGF21) is a modulator of energy homeostasis and is increased in human nonalcoholic liver disease (NAFLD) and after feeding of methionine- and choline-deficient diet (MCD), a conventional inducer of murine nonalcoholic steatohepatitis (NASH). However, the significance of FGF21 induction in the occurrence of MCD-induced NASH remains undetermined. C57BL/6J Fgf21-null and wild-type mice were treated with MCD for 1 week. Hepatic Fgf21 mRNA was increased early after commencing MCD treatment independent of peroxisome proliferator-activated receptor (PPAR) α and farnesoid X receptor. While no significant differences in white adipose lipolysis were seen in both genotypes, hepatic triglyceride (TG) contents were increased in Fgf21-null mice, likely due to the up-regulation of genes encoding CD36 and phosphatidic acid phosphatase 2a/2c, involved in fatty acid (FA) uptake and diacylglycerol synthesis, respectively, and suppression of increased mRNAs encoding carnitine palmitoyl-CoA transferase 1α, PPARγ coactivator 1α, and adipose TG lipase, which are associated with lipid clearance in the liver. The MCD-treated Fgf21-null mice showed increased hepatic endoplasmic reticulum (ER) stress. Exposure of primary hepatocytes to palmitic acid elevated the mRNA levels encoding DNA damage-inducible transcript 3, an indicator of ER stress, and FGF21 in a PPARα-independent manner, suggesting that lipid-induced ER stress can enhance hepatic FGF21 expression. Collectively, FGF21 is elevated in the early stage of MCD-induced NASH likely to minimize hepatic lipid accumulation and ensuing ER stress. These results provide a possible mechanism on how FGF21 is increased in NAFLD/NASH. Published by Elsevier B.V.

Entities:  

Keywords:  ATGL; ER stress; Lipotoxicity; PGC1α; PPARα

Mesh:

Substances:

Year:  2015        PMID: 25736301      PMCID: PMC4433820          DOI: 10.1016/j.bbadis.2015.02.012

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  46 in total

1.  Activation of the farnesoid X receptor induces hepatic expression and secretion of fibroblast growth factor 21.

Authors:  Holly A Cyphert; Xuemei Ge; Alison B Kohan; Lisa M Salati; Yanqiao Zhang; F Bradley Hillgartner
Journal:  J Biol Chem       Date:  2012-06-01       Impact factor: 5.157

2.  CHOP and AP-1 cooperatively mediate PUMA expression during lipoapoptosis.

Authors:  Sophie C Cazanave; Nafisa A Elmi; Yuko Akazawa; Steven F Bronk; Justin L Mott; Gregory J Gores
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2010-04-29       Impact factor: 4.052

3.  The metabolic state of diabetic monkeys is regulated by fibroblast growth factor-21.

Authors:  Alexei Kharitonenkov; Victor J Wroblewski; Anja Koester; Yun-Fei Chen; Cathleen K Clutinger; Xenia T Tigno; Barbara C Hansen; Armen B Shanafelt; Garret J Etgen
Journal:  Endocrinology       Date:  2006-10-26       Impact factor: 4.736

4.  Sources of fatty acids stored in liver and secreted via lipoproteins in patients with nonalcoholic fatty liver disease.

Authors:  Kerry L Donnelly; Coleman I Smith; Sarah J Schwarzenberg; Jose Jessurun; Mark D Boldt; Elizabeth J Parks
Journal:  J Clin Invest       Date:  2005-05       Impact factor: 14.808

5.  Brown adipose tissue responds to cold and adrenergic stimulation by induction of FGF21.

Authors:  Dionysios V Chartoumpekis; Ioannis G Habeos; Panos G Ziros; Agathoklis I Psyrogiannis; Venetsana E Kyriazopoulou; Athanasios G Papavassiliou
Journal:  Mol Med       Date:  2011-02-25       Impact factor: 6.354

6.  Chronic palmitate but not oleate exposure induces endoplasmic reticulum stress, which may contribute to INS-1 pancreatic beta-cell apoptosis.

Authors:  Elizabeth Karaskov; Cameron Scott; Liling Zhang; Tracy Teodoro; Mariella Ravazzola; Allen Volchuk
Journal:  Endocrinology       Date:  2006-04-06       Impact factor: 4.736

7.  Intestinal farnesoid X receptor signaling promotes nonalcoholic fatty liver disease.

Authors:  Changtao Jiang; Cen Xie; Fei Li; Limin Zhang; Robert G Nichols; Kristopher W Krausz; Jingwei Cai; Yunpeng Qi; Zhong-Ze Fang; Shogo Takahashi; Naoki Tanaka; Dhimant Desai; Shantu G Amin; Istvan Albert; Andrew D Patterson; Frank J Gonzalez
Journal:  J Clin Invest       Date:  2014-12-15       Impact factor: 14.808

8.  Adipocyte-specific disruption of fat-specific protein 27 causes hepatosteatosis and insulin resistance in high-fat diet-fed mice.

Authors:  Naoki Tanaka; Shogo Takahashi; Tsutomu Matsubara; Changtao Jiang; Wataru Sakamoto; Tatyana Chanturiya; Ruifeng Teng; Oksana Gavrilova; Frank J Gonzalez
Journal:  J Biol Chem       Date:  2014-12-04       Impact factor: 5.157

9.  Fibroblast growth factor 21 limits lipotoxicity by promoting hepatic fatty acid activation in mice on methionine and choline-deficient diets.

Authors:  Ffolliott M Fisher; Patricia C Chui; Imad A Nasser; Yury Popov; Jeremy C Cunniff; Thomas Lundasen; Alexei Kharitonenkov; Detlef Schuppan; Jeffrey S Flier; Eleftheria Maratos-Flier
Journal:  Gastroenterology       Date:  2014-07-30       Impact factor: 22.682

10.  Fibroblast growth factor-21 regulates PPARγ activity and the antidiabetic actions of thiazolidinediones.

Authors:  Paul A Dutchak; Takeshi Katafuchi; Angie L Bookout; Jang Hyun Choi; Ruth T Yu; David J Mangelsdorf; Steven A Kliewer
Journal:  Cell       Date:  2012-02-03       Impact factor: 41.582

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  45 in total

1.  Hepatocyte-specific PPARA expression exclusively promotes agonist-induced cell proliferation without influence from nonparenchymal cells.

Authors:  Chad N Brocker; Jiang Yue; Donghwan Kim; Aijuan Qu; Jessica A Bonzo; Frank J Gonzalez
Journal:  Am J Physiol Gastrointest Liver Physiol       Date:  2017-01-12       Impact factor: 4.052

2.  Hepatocyte-specific Sirt6 deficiency impairs ketogenesis.

Authors:  Lei Chen; Qinhui Liu; Qin Tang; Jiangying Kuang; Hong Li; Shiyun Pu; Tong Wu; Xuping Yang; Rui Li; Jinhang Zhang; Zijing Zhang; Ya Huang; Yanping Li; Min Zou; Wei Jiang; Tao Li; Meng Gong; Lu Zhang; Hua Wang; Aijuan Qu; Wen Xie; Jinhan He
Journal:  J Biol Chem       Date:  2018-12-10       Impact factor: 5.157

3.  β-Klotho deficiency protects against obesity through a crosstalk between liver, microbiota, and brown adipose tissue.

Authors:  Emmanuel Somm; Hugues Henry; Stephen J Bruce; Sébastien Aeby; Marta Rosikiewicz; Gerasimos P Sykiotis; Mohammed Asrih; François R Jornayvaz; Pierre Damien Denechaud; Urs Albrecht; Moosa Mohammadi; Andrew Dwyer; James S Acierno; Kristina Schoonjans; Lluis Fajas; Gilbert Greub; Nelly Pitteloud
Journal:  JCI Insight       Date:  2017-04-20

Review 4.  Fibroblast growth factor 21 in chronic kidney disease.

Authors:  Paulo Giovanni de Albuquerque Suassuna; Rogério Baumgratz de Paula; Hélady Sanders-Pinheiro; Orson W Moe; Ming-Chang Hu
Journal:  J Nephrol       Date:  2018-11-14       Impact factor: 3.902

5.  Stress of Strains: Inbred Mice in Liver Research.

Authors:  Arlin B Rogers
Journal:  Gene Expr       Date:  2018-08-09

6.  Growth arrest and DNA damage-inducible 45α protects against nonalcoholic steatohepatitis induced by methionine- and choline-deficient diet.

Authors:  Naoki Tanaka; Shogo Takahashi; Xiao Hu; Yu Lu; Naoyuki Fujimori; Srujana Golla; Zhong-Ze Fang; Toshifumi Aoyama; Kristopher W Krausz; Frank J Gonzalez
Journal:  Biochim Biophys Acta Mol Basis Dis       Date:  2017-08-24       Impact factor: 5.187

7.  Pigment Epithelium-Derived Factor (PEDF) Prevents Hepatic Fat Storage, Inflammation, and Fibrosis in Dietary Steatohepatitis of Mice.

Authors:  Takafumi Yoshida; Jun Akiba; Takanori Matsui; Kazuo Nakamura; Takao Hisamoto; Mitsuhiko Abe; Yu Ikezono; Fumitaka Wada; Hideki Iwamoto; Toru Nakamura; Hironori Koga; Sho-Ichi Yamagishi; Takuji Torimura
Journal:  Dig Dis Sci       Date:  2017-04-01       Impact factor: 3.199

8.  Fibroblast growth factor 21 decreases after liver fat reduction via growth hormone augmentation.

Authors:  Laurie R Braun; Meghan N Feldpausch; Natalia Czerwonka; Martin Torriani; Steven K Grinspoon; Takara L Stanley
Journal:  Growth Horm IGF Res       Date:  2017-10-07       Impact factor: 2.372

Review 9.  Nuclear receptors and nonalcoholic fatty liver disease.

Authors:  Matthew C Cave; Heather B Clair; Josiah E Hardesty; K Cameron Falkner; Wenke Feng; Barbara J Clark; Jennifer Sidey; Hongxue Shi; Bashar A Aqel; Craig J McClain; Russell A Prough
Journal:  Biochim Biophys Acta       Date:  2016-03-04

10.  Fibroblast Activation Protein Cleaves and Inactivates Fibroblast Growth Factor 21.

Authors:  Diana Ronai Dunshee; Travis W Bainbridge; Noelyn M Kljavin; Jose Zavala-Solorio; Amy C Schroeder; Ruby Chan; Racquel Corpuz; Manda Wong; Wei Zhou; Gauri Deshmukh; Justin Ly; Daniel P Sutherlin; James A Ernst; Junichiro Sonoda
Journal:  J Biol Chem       Date:  2016-01-21       Impact factor: 5.157

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