Okuno S, Watanabe T K, Ono T, Yamasaki Y, Goto Y, Miyao H, Asai T, Kanemoto N, Oga K, Mizoguchi-Miyakita A, Takagi T, Takahashi E, Nakamura Y, Tanigami A
Otsuka GEN Research Institute, Otsuka Pharmaceutical Co., Ltd., 463-10 Kagasuno, Kawauchi-cho, Tokushima, 771-0192, Japan.
Genomics. 1999 Dec 15;62(3):350-5. doi: 10.1006/geno.1999.6018.
Altered lipid metabolism is closely associated with diabetes in humans, although predisposing genetic factors that affect hyperlipidemia have not yet been clarified. Our previously established OLETF strain is an obese rat model of type II diabetes, exhibiting hypertriglycemia as well as hyperinsulinemia, hyperglycemia, insulin resistance, and abundant abdominal fat. To identify genetic factors responsible for dyslipidemic phenotypes in OLETF rats, we performed a whole-genome scan using 293 male (OLETF x BN) x OLETF backcross rats. Our analysis identified two significant quantitative trait loci (QTLs), on rat chromosomes 1 and 8, that are related to fasting triglyceride levels. The chromosome 1 QTL colocalized with Dmo1 (diabetes mellitus, OLETF type 1), a locus previously shown to associate strongly with both fat levels and body weight. The other significant QTL localizes to the chromosome 8 marker D8Mit2, in a region where several apo-lipoprotein genes are clustered.
脂质代谢改变与人类糖尿病密切相关,尽管影响高脂血症的遗传易感性因素尚未明确。我们先前建立的OLETF品系是II型糖尿病的肥胖大鼠模型,表现出高甘油三酯血症以及高胰岛素血症、高血糖、胰岛素抵抗和大量腹部脂肪。为了鉴定OLETF大鼠血脂异常表型的遗传因素,我们使用293只雄性(OLETF×BN)×OLETF回交大鼠进行了全基因组扫描。我们的分析确定了大鼠1号和8号染色体上两个与空腹甘油三酯水平相关的显著数量性状位点(QTL)。1号染色体上的QTL与Dmo1(OLETF型糖尿病1)共定位,该位点先前已显示与脂肪水平和体重都密切相关。另一个显著的QTL定位于8号染色体标记D8Mit2,在该区域有几个载脂蛋白基因聚集。