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Identification of interactive Loci linked to insulin and leptin in mice with genetic insulin resistance.

机译:鉴定具有遗传胰岛素抵抗的小鼠中与胰岛素和瘦素相关的相互作用基因座。

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Mice double heterozygous (DH) for deletion of insulin receptor and insulin receptor substrate-1 are lean, insulin resistant, and have a phenotype that strongly depends on the genetic background of the mouse. On the C57BL/6 (B6) background, DH mice develop marked hyperinsulinemia and diabetes, whereas on the 129S6 background, DH mice exhibit only mild elevations of insulin and remain free of diabetes. F2 male mice created by an intercross between these two strains exhibit a 60% incidence of diabetes and a bell-shaped distribution of insulin levels as related to glucose, reminiscent of that in humans with type 2 diabetes. These mice also exhibit a wide range of leptin levels as related to body weight. A genome-wide scan of F2 mice reveals a quantitative trait locus (QTL) related to hyperinsulinemia on chromosome 14 (D14Mit55) with a peak logarithm of odds (LOD) score of 5.6, accounting for up to 69% of this trait. A QTL with a LOD score of 3.7 related to hyperleptinemia is present on chromosome 7 at D12Mit38 (a marker previously assigned to chromosome 12) in the area of the uncoupling protein 2/3 gene cluster. This locus also interacts synergistically with D14Mit55 in development of hyperinsulinemia and with a QTL on chromosome 12 (D12Mit231) related to hyperglycemia. These data demonstrate how multiple genetic modifiers can interact and influence the development of diabetes and the phenotype of animals with genetically programmed insulin resistance and provide evidence as to the location and nature of these genes.
机译:用于删除胰岛素受体和胰岛素受体底物1的小鼠双杂合子(DH)是瘦的,胰岛素抵抗的,并且具有强烈依赖于小鼠遗传背景的表型。在C57BL / 6(B6)背景下,DH小鼠发展出明显的高胰岛素血症和糖尿病,而在129S6背景下,DH小鼠仅表现出轻度的胰岛素升高,并且没有糖尿病。由这两个品系之间的杂交产生的F2雄性小鼠表现出60%的糖尿病发生率以及与葡萄糖相关的钟形胰岛素水平分布,让人联想到2型糖尿病人的情况。这些小鼠还表现出与体重有关的多种瘦素水平。 F2小鼠的全基因组扫描显示与14号染色体(D14Mit55)高胰岛素血症有关的定量性状基因座(QTL),赔率(LOD)峰值对数为5.6,占该性状的69%。在解偶联蛋白2/3基因簇区域的D12Mit38(先前分配给第12号染色体的标记)的第7号染色体上存在一个LOD得分为3.7的QTL。在高胰岛素血症的发生中,该基因座还与D14Mit55协同相互作用,并与12号染色体上的QTL(D12Mit231)协同相互作用,与高血糖有关。这些数据证明了多种遗传修饰剂如何相互作用和影响糖尿病的发展以及具有遗传控制的胰岛素抵抗的动物的表型,并提供了有关这些基因的位置和性质的证据。

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