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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Differential expression of genes and changes in glucose metabolism in the liver of liver-specific glucokinase gene knockout mice
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Differential expression of genes and changes in glucose metabolism in the liver of liver-specific glucokinase gene knockout mice

机译:基因的差异表达及肝脏特异性血糖蛋白酶基因敲除小鼠肝脏血糖代谢的变化

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摘要

To investigate the role of liver-specific expression of glucokinase (GCK) in the pathogenesis of hyperglycemia and to identify candidate genes involved in mechanisms of the onset and progression of maturity onset diabetes of the young, type 2 (MODY-2), we examined changes in biochemical parameters and gene expression in GCK knockout (gckw/-) and wild-type (gckw/w) mice as they aged. Fasting blood glucose levels were found to be significantly higher in the gckw/- mice, compared to age-matched gckw/w mice, at all ages (P0.05), except at 2weeks. GCK activity of gckw/- mice was about 50% of that of wild type (gckw/w) mice (P0.05). Glycogen content at 4 and 40weeks of age was lower in gckw/- mice compared to gckw/w mice. Differentially expressed genes in the livers of 2 and 26week-old liver-specific GCK knockout (gckw/-) mice were identified by suppression subtractive hybridization (SSH), which resulted in the identification of phosphoenolpyruvatecarboxykinase (PEPCK, also called PCK1) and Sterol O-acyltransferase 2 (SOAT2) as candidate genes involved in pathogenesis. The expressions of PEPCK and SOAT2 along with glycogen phosphorylase (GP) and glycogen synthase (GS) were then examined in GCK knockout (gckw/-) and wild-type (gckw/w) mice at different ages. Changes in PEPCK mRNA levels were confirmed by real-time RT-PCR, while no differences in the levels of expression of SOAT2 or GS were observed in age-matched GCK knockout (gckw/-) and wild-type (gckw/w) mice. GP mRNA levels were decreased in 40-week old gckw/- mice compared to age-matched gckw/w mice. Changes in gluconeogenesis, delayed development of GCK and impaired hepatic glycogen synthesis in the liver potentially lead to the onset and progression of MODY2. ? 2012 Elsevier B.V.
机译:探讨血糖酮酶(GCK)在高血糖症发病机制中的肝细胞特异性表达的作用,并鉴定参与作用于年轻的成熟型糖尿病的发病机制的候选基因,2型(MODY-2),我们检查了诸如老化时荷敲除(GCKW / - )和野生型(GCKW / W)小鼠的生物化学参数和基因表达的变化。除了2周外,与所有年龄段(P <0.05)相比,GCKW / - 小鼠的禁食血糖水平被发现在GCKW / - 小鼠中显着高。 GCKW / - 小鼠的GCK活性约为野生型(GCKW / W)小鼠的50%(P <0.05)。与GCKW / W小鼠相比,GCKW / - 小鼠的4和40周的糖原含量较低。通过抑制减法杂交(SSH)鉴定了2和26周龄肝脏特异性GCK敲除(GCKW / - )小鼠的卵形表达基因,导致磷酸丙酮甲基菌(PEPCK,也称为PCK1)和甾醇O的鉴定 - 作为涉及发病机制的候选基因 - 酰基转移酶2(SOAT2)。然后在不同年龄的GCK敲除(GCKW / - )和野生型(GCKW / W)小鼠中检查PEPCK和SOAT2以及糖原磷酸化酶(GP)和糖合酶(GS)的表达。通过实时RT-PCR确认PEPCK mRNA水平的变化,而在年龄匹配的垃圾淘汰(GCKW / - )和野生型(GCKW / W)小鼠中,观察到SOAT2或Gs表达水平的差异。与年龄匹配的GCKW / W小鼠相比,40周的GCKW / - 小鼠中,GP mRNA水平降低。葡糖生成的变化,荷的延迟发展和肝脏中肝糖原合成的受损可能导致Mody2的发作和进展。还2012年Elsevier B.v.

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  • 作者单位

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Department of Integrated Traditional Chinese and Western Medicine Peking University Health;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

    Beijing N and N Genetech Company Beijing 100082 China;

    Department of Pharmacology Peking University Health Science Center Beijing 100191 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
  • 关键词

    Differentially expressed genes; Glucokinase (GCK); Liver; MODY2;

    机译:差异表达基因;葡萄糖酮(GCK);肝脏;MODY2;

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