基础医学与临床 ›› 2017, Vol. 37 ›› Issue (6): 855-859.

• 研究论文 • 上一篇    下一篇

饥饿、糖尿病和肥胖状态对小鼠肝脏SOCS2基因表达的影响

崔安芳,马晓磊,黄延红,张向阳   

  1. 济宁医学院
  • 收稿日期:2017-04-10 修回日期:2017-04-19 出版日期:2017-06-05 发布日期:2017-05-26
  • 通讯作者: 崔安芳 E-mail:caf911@163.com
  • 基金资助:
    济宁医学院2013年度博士基金项目

Effects of fasted, diabetes and obese conditions on mouse hepatic SOCS2 gene expression

  • Received:2017-04-10 Revised:2017-04-19 Online:2017-06-05 Published:2017-05-26

摘要: 目的 确定小鼠肝脏SOCS2基因在饥饿、糖尿病和肥胖状态下的表达水平,并初步研究SOCS2对糖异生的影响。方法 动物分3组:C57BL/6J小鼠、对照组(饱食)和实验组(饥饿24 h);糖尿病模型小鼠db/db及对照小鼠db/m饱食;肥胖模型小鼠ob/ob及其对照C57BL/6J小鼠(饱食)。处死小鼠后提取肝脏RNA做反转录PCR,荧光实时定量PCR检测小鼠肝脏SOCS2及糖异生相关基因在3组小鼠中的表达水平;使用腺病毒表达系统在C57BL/6J小鼠原代肝细胞中过表达SOCS2,Western blot检测SOCS2蛋白的表达,葡萄糖生成实验检测糖输出。结果 饥饿使C57BL/6J小鼠肝脏中SOCS2 mRNA水平下调,db/db和ob/ob小鼠肝脏SOCS2基因表达比其对照小鼠均明显下降(P<0.05),调节糖异生的关键基因PGC-1α、PEPCK和G6Pase的mRNA水平均上升。在C57BL/6J小鼠原代肝细胞中过表达SOCS2,得到大小为Mr 23000的蛋白,糖输出受到明显抑制。结论 初步认定SOCS2可抑制C57BL/6J小鼠原代肝细胞糖异生,可能是治疗糖尿病的一个新靶点。

关键词: SOCS2, 饥饿, 糖异生

Abstract: Objective To determine the expression levels of SOCS2 in the mouse livers under fasted, diabetes and obese conditions and to study the effect of SOCS2 on gluconeogenesis. Methods Animal were divided into 3 groups: C57BL/6J mice, the control group was fed ad libtum and the experimental group was fasted for 24 h. Diabetes model db/db and the control db/m mice were fed ad libitum. Obese model ob/ob and the control C57BL/6J mice were fed ad libitum. All the mice above were sacrificed and total RNA was isolated from mouse livers and reverse transcribed to cDNA. The expression levels of SOCS2 and gluconeogenesis genes in the mouse livers in the 3 groups above were detected by real-time quantitative PCR. SOCS2 was overexpressed in the primary C57BL/6J mouse hepatocytes by the adenovirus system. The effect of SOCS2 on glucose production was measured by glucose output assay. Results C57BL/6J mouse hepatic SOCS2 expression was suppressed by fasted status. The expression levels of SOCS2 were decreased in the livers of db/db and ob/ob mice. In contrast, the key regulators of gluconeogenesis, PGC-1α, PEPCK and G6Pase exhibited the opposite expression pattern as SOCS2 in the livers under identical fasted, diabetes and obese conditions. The protein was Mr 23 000 and glucose production was inhibited after SOCS2 was overexpressed in the primary C57BL/6J mouse hepatocytes by adenovirus system. Conclusions SOCS2 is speculated to inhibit gluconeogenesis in the C57BL/6J mouse primary hepatocytes, and SOCS2 may be a new target for the treatment of type II diabetes.

Key words: SOCS2, fasted, gluconeogenesis

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