小鼠11号染色体链脲霉素诱导糖尿病易感位点的基因定位及候选基因分析。

Tomoki Maegawa, Yuki Miyasaka, Misato Kobayashi, Naru Babaya, Hiroshi Ikegami, Fumihiko Horio, Masahide Takahashi, Tamio Ohno
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引用次数: 7

摘要

链脲佐菌素(STZ)被广泛用于啮齿动物的糖尿病诱导。据报道,菌株对STZ的敏感性存在差异;然而,导致STZ易感性的基因尚未被确定。本研究利用A/J-11SM经济型菌株和从A/J-11SM获得的11号染色体(Chr. 11)同源菌株,鉴定了一个候选stz诱导糖尿病易感基因。A/J菌株对stz诱导的糖尿病的易感性显著高于A/J- 11sm菌株,证实了在Chr 11上存在一个易感性位点。我们将该基因座命名为Stzds1 (STZ-induced diabetes susceptibility 1)。利用Chr. 11同源菌株进行基因定位发现,Stzds1基因座位于D11Mit163 (27.72 Mb)和D11Mit51 (36.39 Mb)之间。Mpg基因位于Stzds1区域,编码n -甲基嘌呤DNA糖基酶(Mpg), Mpg是一种普遍存在的DNA修复酶,负责去除DNA中的烷基化碱基损伤。STZ作用早期的DNA烷基化与MPG的功能密切相关。Mpg基因的Sanger序列分析显示在A/J基因组中有5个多态性位点。其中一种变异p.a ala132ser位于啮齿类动物中高度保守的区域和MPG酶活性保持最低的区域。这可能是由p.a ala132ser突变引起的MPG结构改变引起STZ对DNA中烷基化碱基病变的识别和切除增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Congenic mapping and candidate gene analysis for streptozotocin-induced diabetes susceptibility locus on mouse chromosome 11.

Streptozotocin (STZ) has been widely used to induce diabetes in rodents. Strain-dependent variation in susceptibility to STZ has been reported; however, the gene(s) responsible for STZ susceptibility has not been identified. Here, we utilized the A/J-11SM consomic strain and a set of chromosome 11 (Chr. 11) congenic strains developed from A/J-11SM to identify a candidate STZ-induced diabetes susceptibility gene. The A/J strain exhibited significantly higher susceptibility to STZ-induced diabetes than the A/J-11SM strain, confirming the existence of a susceptibility locus on Chr. 11. We named this locus Stzds1 (STZ-induced diabetes susceptibility 1). Congenic mapping using the Chr. 11 congenic strains indicated that the Stzds1 locus was located between D11Mit163 (27.72 Mb) and D11Mit51 (36.39 Mb). The Mpg gene, which encodes N-methylpurine DNA glycosylase (MPG), a ubiquitous DNA repair enzyme responsible for the removal of alkylated base lesions in DNA, is located within the Stzds1 region. There is a close relationship between DNA alkylation at an early stage of STZ action and the function of MPG. A Sanger sequence analysis of the Mpg gene revealed five polymorphic sites in the A/J genome. One variant, p.Ala132Ser, was located in a highly conserved region among rodent species and in the minimal region for retained enzyme activity of MPG. It is likely that structural alteration of MPG caused by the p.Ala132Ser mutation elicits increased recognition and excision of alkylated base lesions in DNA by STZ.

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