Literature DB >> 20529882

Glucagon regulates intracellular distribution of adipose differentiation-related protein during triacylglycerol accumulation in the liver.

Katsuhiko Takahashi1, Naoko Sasabe, Kumiko Ohshima, Keiko Kitazato, Rina Kato, Yutaka Masuda, Mika Tsurumaki, Takashi Obama, Shin-ichi Okudaira, Junken Aoki, Hiroyuki Arai, Tomohiro Yamaguchi, Hiroyuki Itabe.   

Abstract

Cellular lipid droplets (LD) are organelles involved in cellular lipid metabolism. When liver cellular components were fractionated using sucrose density gradient centrifugation, adipose differentiation-related protein (ADRP) was distributed in both the top and bottom fractions, which correspond to the LD and membranous fractions, respectively, in the mouse liver under normal feeding conditions. After overnight fasting, triacylglycerol and ADRP increased nearly 2.5-fold in the mouse liver, and a portion appeared in the intermediate-density LD (iLD) fractions. ADRP in the iLD fractions was also increased in a mouse nonalcoholic steatohepatitis model induced by methione/choline-deficient diet. When HuH-7 human hepatoma cells were incubated with oleic acid for 24 h, the amount of ADRP increased, and it was distributed in both the LD and membrane fractions. However, ADRP appeared in the iLD fractions upon treatment of HuH-7 cells with glucagon. This behavior of ADRP was cAMP-dependent, as the ADRP-positive iLD fractions were induced by dibutylyl cAMP and were blocked by protein kinase A inhibitors. A portion of ADRP colocalized microscopically with calnexin, which is present in the iLD fractions, by treatment of HuH-7 cells or human primary hepatocytes with oleic acid and glucagon, but not by treatment with oleic acid alone. Glucagon has a role in the reorganization of endoplasmic reticulum membranes to generate ADRP-associated lipid-poor particles in hepatic cells, which is related to LD formation during lipid storage.

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Year:  2010        PMID: 20529882      PMCID: PMC2918440          DOI: 10.1194/jlr.M004648

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  45 in total

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Journal:  J Biochem       Date:  2006-05       Impact factor: 3.387

2.  Transmembrane lipid transfer is crucial for providing neutral lipids during very low density lipoprotein assembly in endoplasmic reticulum.

Authors:  Yusuke Higashi; Hiroyuki Itabe; Hironaga Fukase; Masahiro Mori; Yasuyuki Fujimoto; Tatsuya Takano
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3.  Absence of perilipin results in leanness and reverses obesity in Lepr(db/db) mice.

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Journal:  Nat Genet       Date:  2000-12       Impact factor: 38.330

Review 4.  Glucagon and regulation of glucose metabolism.

Authors:  Guoqiang Jiang; Bei B Zhang
Journal:  Am J Physiol Endocrinol Metab       Date:  2003-04       Impact factor: 4.310

5.  The peroxisome proliferator-activated receptor delta promotes lipid accumulation in human macrophages.

Authors:  H Vosper; L Patel; T L Graham; G A Khoudoli; A Hill; C H Macphee; I Pinto; S A Smith; K E Suckling; C R Wolf; C N Palmer
Journal:  J Biol Chem       Date:  2001-09-13       Impact factor: 5.157

6.  Chinese hamster ovary K2 cell lipid droplets appear to be metabolic organelles involved in membrane traffic.

Authors:  Pingsheng Liu; Yunshu Ying; Yingming Zhao; Dorothy I Mundy; Meifang Zhu; Richard G W Anderson
Journal:  J Biol Chem       Date:  2003-11-03       Impact factor: 5.157

7.  Inhibition of phosphatidylcholine synthesis via the phosphatidylethanolamine methylation pathway impairs incorporation of bulk lipids into VLDL in cultured rat hepatocytes.

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8.  Identification of major proteins in the lipid droplet-enriched fraction isolated from the human hepatocyte cell line HuH7.

Authors:  Yasuyuki Fujimoto; Hiroyuki Itabe; Jun Sakai; Minoru Makita; Junich Noda; Masahiro Mori; Yusuke Higashi; Shinichi Kojima; Tatsuya Takano
Journal:  Biochim Biophys Acta       Date:  2004-02-02

9.  Rodent nutritional model of non-alcoholic steatohepatitis: species, strain and sex difference studies.

Authors:  Richard Kirsch; Vivian Clarkson; Enid G Shephard; David A Marais; Mohamed A Jaffer; Vivienne E Woodburne; Ralph E Kirsch; Pauline de la M Hall
Journal:  J Gastroenterol Hepatol       Date:  2003-11       Impact factor: 4.029

10.  Perilipin A is essential for the translocation of hormone-sensitive lipase during lipolytic activation.

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Journal:  J Cell Biol       Date:  2003-06-16       Impact factor: 10.539

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  8 in total

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Authors:  Marc A Tuazon; Taylor R McConnell; Gabriel J Wilson; Tracy G Anthony; Gregory C Henderson
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2.  Sar1 Affects the Localization of Perilipin 2 to Lipid Droplets.

Authors:  Tomohiko Makiyama; Takashi Obama; Yuichi Watanabe; Hiroyuki Itabe
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Review 3.  Cellular and molecular mechanisms in the pathogenesis of liver fibrosis: An update.

Authors:  Gülsüm Özlem Elpek
Journal:  World J Gastroenterol       Date:  2014-06-21       Impact factor: 5.742

4.  Docosahexaenoic acid increases accumulation of adipocyte triacylglycerol through up-regulation of lipogenic gene expression in pigs.

Authors:  Chao-Wei Huang; Yu-Jen Chen; Jui-Ting Yang; Ching-Yi Chen; Kolapo M Ajuwon; Shuen-Ei Chen; Nan-Wei Su; Yu-Shan Chen; Harry J Mersmann; Shih-Torng Ding
Journal:  Lipids Health Dis       Date:  2017-02-07       Impact factor: 3.876

5.  Feeding-fasting dependent recruitment of membrane microdomain proteins to lipid droplets purified from the liver.

Authors:  Kritika Sadh; Priyanka Rai; Roop Mallik
Journal:  PLoS One       Date:  2017-08-11       Impact factor: 3.240

Review 6.  Microtubule motor driven interactions of lipid droplets: Specificities and opportunities.

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Journal:  Front Cell Dev Biol       Date:  2022-09-19

7.  Quantitative optical trapping on single organelles in cell extract.

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Journal:  Nat Methods       Date:  2012-12-16       Impact factor: 28.547

8.  Kinesin-dependent mechanism for controlling triglyceride secretion from the liver.

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  8 in total

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