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Separately inherited defects in insulin exocytosis and beta-cell glucose metabolism contribute to type 2 diabetes.

机译:胰岛素胞吐作用和β细胞葡萄糖代谢中单独遗传的缺陷会导致2型糖尿病。

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摘要

The effects of genetic variation on molecular functions predisposing to type 2 diabetes are still largely unknown. Here, in a specifically designed diabetes model, we couple separate gene loci to mechanisms of beta-cell pathology. Niddm1i is a major glucose-controlling 16-Mb region in the diabetic GK rat that causes defective insulin secretion and corresponds to loci in humans and mice associated with type 2 diabetes. Generation of a series of congenic rat strains harboring different parts of GK-derived Niddm1i enabled fine mapping of this locus. Congenic strains carrying the GK genotype distally in Niddm1i displayed reduced insulin secretion in response to both glucose and high potassium, as well as decreased single-cell exocytosis. By contrast, a strain carrying the GK genotype proximally in Niddm1i exhibited both intact insulin release in response to high potassium and intact single-cell exocytosis, but insulin secretion was suppressed when stimulated by glucose. Islets from this strain also failed to respond to glucose by increasing the cellular ATP-to-ADP ratio. Changes in beta-cell mass did not contribute to the secretory defects. We conclude that the failure of insulin secretion in type 2 diabetes includes distinct functional defects in glucose metabolism and insulin exocytosis of the beta-cell and that their genetic fundaments are encoded by different loci within Niddm1i.
机译:遗传变异对易患2型糖尿病的分子功能的影响仍然未知。在这里,在一个专门设计的糖尿病模型中,我们将单独的基因位点与β细胞病理机制耦合。 Niddm1i是糖尿病GK大鼠中主要的葡萄糖控制16-Mb区,可导致胰岛素分泌缺陷,并与2型糖尿病相关的人和小鼠的基因座相对应。包含GK衍生的Niddm1i不同部分的一系列同系大鼠品系的生成使该基因座的精细定位成为可能。 Niddm1i在远端携带GK基因型的同系菌株响应葡萄糖和高钾均显示出胰岛素分泌减少,以及单细胞胞吐减少。相比之下,在Niddm1i的近端带有GK基因型的菌株表现出完整的胰岛素释放(响应高钾)和完整的单细胞胞吐作用,但是当受到葡萄糖刺激时,胰岛素分泌被抑制。该菌株的胰岛也无法通过增加细胞ATP与ADP的比例来响应葡萄糖。 β细胞质量的变化不会导致分泌缺陷。我们得出结论,在2型糖尿病中,胰岛素分泌的失败包括葡萄糖代谢和β细胞的胰岛素胞吐作用的明显功能缺陷,并且它们的遗传基础由Niddm1i中的不同基因座编码。

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