Shike T, Hirose S, Kobayashi M, Funabiki K, Shirai T, Tomino Y
Division of Nephrology, Department of Medicine, and the. Department of Pathology, Juntendo University School of Medicine, Tokyo, Japan.
Diabetes. 2001 Aug;50(8):1943-8. doi: 10.2337/diabetes.50.8.1943.
The KK/Ta mouse strain serves as a suitable polygenic model for human type 2 diabetes. Using 93 microsatellite markers in 208 KK/Ta x (BALB/c x KK/Ta)F1 male backcross mice, we carried out a genome-wide linkage analysis of KK/Ta alleles contributing to type 2 diabetes and related phenotypes, such as obesity and dyslipidemia. We identified three major chromosomal intervals significantly contributing to impaired glucose metabolism: one quantitative trait locus for impaired glucose tolerance on chromosome 6 and two loci for fasting blood glucose levels on chromosomes 12 and 15. The latter two loci appeared to act in a complementary fashion. Two intervals showed significant linkages for serum triglyceride levels, one on chromosome 4 and the other on chromosome 8. The KK allele on chromosome 8 acts to promote serum triglyceride levels, whereas the KK allele on chromosome 4 acts to suppress this effect in a recessive fashion. In addition, it is suggested that the chromosome 4 locus also acts to downregulate body weight and that the chromosome 8 locus acts to upregulate serum insulin levels. Our data clearly showed that each disease phenotype of type 2 diabetes and related disorders in KK/Ta mice is under the control of separate genetic mechanisms. However, there appear to be common genes contributing to different disease phenotypes. There are potentially important candidate genes that may be relevant to the disease.
KK/Ta小鼠品系是一种适用于人类2型糖尿病的多基因模型。我们在208只KK/Ta x (BALB/c x KK/Ta)F1雄性回交小鼠中使用93个微卫星标记,对导致2型糖尿病及相关表型(如肥胖和血脂异常)的KK/Ta等位基因进行了全基因组连锁分析。我们确定了三个对葡萄糖代谢受损有显著贡献的主要染色体区间:一个位于6号染色体上的葡萄糖耐量受损数量性状位点,以及位于12号和15号染色体上的两个空腹血糖水平位点。后两个位点似乎以互补的方式起作用。两个区间对血清甘油三酯水平显示出显著连锁,一个在4号染色体上,另一个在8号染色体上。8号染色体上的KK等位基因起到促进血清甘油三酯水平的作用,而4号染色体上的KK等位基因则以隐性方式抑制这种作用。此外,有迹象表明4号染色体位点也起到下调体重的作用,而8号染色体位点则起到上调血清胰岛素水平的作用。我们的数据清楚地表明,KK/Ta小鼠中2型糖尿病及相关疾病的每种疾病表型都受独立遗传机制的控制。然而,似乎存在对不同疾病表型有贡献的共同基因。存在可能与该疾病相关的潜在重要候选基因。