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地塞米松和胰岛素调节猪脂肪细胞SOCS-3、OB、GLUT4和PPARγ基因的表达 被引量:2

Regulation of SOCS-3,OB,GLUT4 and PPARγ Gene Expression by Insulin and Dexamethasone in Porcine Primary Adipocyte
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摘要 猪是研究糖尿病最理想的模型动物,研究胰岛素和胰岛素抵抗是研究糖尿病的重要环节。为明确SOCS-3在胰岛素抵抗中的作用,分别用100nmol/L的胰岛素,300nmol/L的地塞米松处理原代培养的猪脂肪细胞诱导胰岛素抵抗;利用半定量RT-PCR技术分别检测SOCS-3、OB、GLUT4和PPARγ基因表达变化。结果发现,胰岛素增加了GLUT4、SOCS-3和PPARγ基因的表达,对OB基因表达变化没有显著性影响;地塞米松诱导的胰岛素抵抗状态下OB和SOCS-3基因表达水平升高,而GLUT4和PPARγ基因表达水平显著下调。研究结果表明,GLUT4基因表达量水平的升高可能是由于PPARγ的高表达引起,SOCS-3基因的不同表达水平对胰岛素信号的抑制效果不同。地塞米松诱导的胰岛素抵抗不仅表现在对葡萄糖转运的抑制,也反映在抑制了胰岛素信号;而SOCS-3基因可能是消除胰岛素抵抗的一个有效靶基因。 Swine is an ideal model for diabetes studies. Insulin and insufin resistance are closely related with diabetes. To investigate the effect of SOCS-3 in insulin resistance, porcine primary adipocyte was treated with insulin (100 nmol/L) and dexamethasone (300 nmol/L) to induce insulin resistance. The simi-quantitative PCR results suggested that insulin increased GLUT4, PPARγ and SOCS-3 gene expression in primary culture porcine adipocytes and no change of OB gene expression. Under insulin resistance conditions, SOCS-3 and OB gene expression were up-regulated, whereas GLUT4 and PPARγ gene expression were down-regulated in primary porcine adipocytes. The overexpression of PPARγ gene resulted in the increase of GLUT4 expression by insulin. Different expression levels of SOCS-3 determined the inhibitory effects of insulin signaling. Induction of insulin resistance by dexamethasone was not only due to inhibition of glucose transportation, but also repression of insulin signaling. SOCS-3 might be a potential gene to block the insulin resistance.
出处 《生物工程学报》 CAS CSCD 北大核心 2008年第8期1354-1360,共7页 Chinese Journal of Biotechnology
基金 国家高技术研究发展计划(863计划)项目(No.2006AA10Z138)~~
关键词 SOCS-3 GLUT4 PPARΓ OB 胰岛素抵抗 地塞米松 SOCS-3, GLUT4, PPARγ, OB, insulin resistance, dexamethasone
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  • 1Bellinger DA, Merricks EP, Nichols TC. Swine models of type 2 diabetes mellitus: insulin resistance, glucose tolerance, and cardiovascular complications. ILAR J, 2006, 47(3): 243-258.
  • 2Dixon JL, Stoops JD, Parker JL, et al. Dyslipidemia and vascular dysfunction in diabetic pigs fed an atherogenic diet. Arterioscler Thromb Vasc Biol, 1999, 19(12): 2981-2992.
  • 3Koyama K, Chen G, Lee Y, et al. Tissue triglycerides, insulin resistance, and insulin production: implications for hyperinsulinemia of obesity. Am J Physiol, 1997, 36(4): E708-713.
  • 4Arner E Insulin resistance in type 2 diabetes-role of the adipokines. Curr Mol Med, 2005, 5(3): 333-339.
  • 5Nakagawa T, Ogawa Y, Ebihara K, et al. Anti-obesity and anti-diabetic effects of brain-derived neurotrophic factor in rodent models of Leptin resistance, lnt J Obes Relat Metab Disord, 2003, 27(5): 557-565.
  • 6Walder K, Lewandowski P, Morton G, et al. Leptin resistance in a polygenic, hyperLeptinemic animal model of obesity and NIDDM: Psammomys obesus, Int J Obes Relat Metab Disord, 1999, 23(1 ): 83-89.
  • 7Watson RT, Pessin JE. Intracellular organization of insulin signaling and GLUT4 translocation. Recent Prog Horm Res, 2001,56(1): 175-193.
  • 8Brun RE Kim JB, Hu E, et al. Adipocyte differentiation: a transcriptional regulatory cascade. Curr Opin Cell Biol, 1996, 8(6): 826-832.
  • 9Chawla A, Lazar MA. Peroxisome proliferator and retinoid signaling pathways co-regulate preadipocyte phenotype and survival. Proc Natl Acad Sci USA, 1994, 91(5): 1786-1790.
  • 10Santini E, Fallahi P, Ferrari SM, et al. Effect of PPAR- gamma activation and inhibition on glucose-stimulated insulin release in INS-1e cells. Diabetes, 2004, 53(Suppl 3): S79-83.

同被引文献24

  • 1鞠强,尹兴平,石继海,辛燕,康晓静,陈沄,崔盘根,曹元华,夏隆庆.丹参酮对人皮脂腺细胞增殖、脂质合成及雄性激素受体mRNA表达的影响[J].中华皮肤科杂志,2005,38(2):98-101. 被引量:57
  • 2吴效科,Erkkola Risto.胰岛素增敏剂对多囊卵巢综合征患者卵巢局部胰岛素抵抗的影响[J].中华妇产科杂志,2004,39(12):804-808. 被引量:22
  • 3赵虹.黄芪丹参为主治疗高雄激素血症的效果观察[J].现代中西医结合杂志,2005,14(4):466-466. 被引量:31
  • 4Start R, Willson TA, Viney EM, et al. A family of cytokine inducible inhibitors of signalling. Nature, 1997, 387: 917-921.
  • 5Endo TA, Masuhara M, Yokouchi M, et al. A new protein containing an SH2 domain that inhibits JAK kinases. Nature, 1997, 387: 921-924.
  • 6Naka T, Narazaki M, Hirata M, et al. Structure and function of a new STAT-induced STAT inhibitor. Nature, 1997, 387: 924-929.
  • 7Krebs DL, Hilton DJ. SOCS: physiological suppressors of cytokine signaling. J Cell Sci, 2000, 113: 2813-2819.
  • 8Krebs DL, Hilton DJ. SOCS proteins: negative regulators of cytokine signaling. Stem Cells, 2001, 19: 378-387.
  • 9Alexander WS. Suppressors of cytokine signaling (SOCS) in the immune system. Nat Rev Immunol, 2002, 2: 410-416.
  • 10Ronn SG, Hansen JA, Lindberg K, et al. The effect of suppressor of cytokine signaling 3 on GH signaling in B-cells. Mol Endocrinol, 2002, 16(9): 2124-2134.

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