Roesler W J, Pugazhenthi S, Khandelwal R L
Department of Biochemistry, Case Western Reserve University, Cleveland, OH 44106.
Mol Cell Biochem. 1990 Feb 9;92(2):99-106. doi: 10.1007/BF00218127.
Knowledge of the metabolic changes that occur in insulin-resistant type 2 diabetes is relatively lacking compared to insulin-deficient type 1 diabetes. This paper summarizes the importance of the C57BL/KsJ-db/db mouse as a model of type 2 diabetes, and illustrates the effects that insulin-deficient and insulin-resistant states have on hepatic glycogen metabolism. A longitudinal study of db/db mice of ages 2-15 weeks revealed that significant changes in certain parameters of hepatic glycogen metabolism occur during this period. The liver glycogen levels were similar between diabetic and control mice. However, glycogen particles from db/db mice were on average smaller in mass and had shorter exterior and interior chain lengths. Total phosphorylase and phosphorylase a activities were elevated in the genetically diabetic mice. This was primarily due to an increase in the amount of enzymic protein apparently the result of a decreased rate of degradation. It was not possible to find a consistent alteration in glycogen activity in the db/db mice. Glycogen synthase and phosphorylase from diabetic liver revealed some changes in kinetic properties in the form of a decrease in Vmax and altered sensitivity to inhibitors like ATP. The altered glycogen structure in db/db mice may have contributed to changes in the activities and properties of glycogen synthase and phosphorylase. The exact role played by hormones (insulin and glucagon) in these changes is not clear but further studies should reveal their contributions. The db/db mouse provides a good model for type 2 diabetes and for fluctuating insulin and glucagon ratios.(ABSTRACT TRUNCATED AT 250 WORDS)
与胰岛素缺乏的1型糖尿病相比,我们对胰岛素抵抗的2型糖尿病中发生的代谢变化了解相对较少。本文总结了C57BL/KsJ-db/db小鼠作为2型糖尿病模型的重要性,并阐述了胰岛素缺乏和胰岛素抵抗状态对肝糖原代谢的影响。一项对2至15周龄db/db小鼠的纵向研究表明,在此期间肝糖原代谢的某些参数发生了显著变化。糖尿病小鼠和对照小鼠的肝糖原水平相似。然而,db/db小鼠的糖原颗粒平均质量较小,外部和内部链长度较短。遗传性糖尿病小鼠的总磷酸化酶和磷酸化酶a活性升高。这主要是由于酶蛋白量的增加,显然是降解速率降低的结果。在db/db小鼠中未能发现糖原活性的一致变化。糖尿病肝脏中的糖原合酶和磷酸化酶在动力学性质上表现出一些变化,表现为Vmax降低以及对ATP等抑制剂的敏感性改变。db/db小鼠中糖原结构的改变可能导致了糖原合酶和磷酸化酶活性及性质的变化。激素(胰岛素和胰高血糖素)在这些变化中的确切作用尚不清楚,但进一步的研究应能揭示它们的作用。db/db小鼠为2型糖尿病以及胰岛素和胰高血糖素比例的波动提供了一个良好的模型。(摘要截短于250字)