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Increased Autoimmune Diabetes in pIgR-Deficient NOD Mice Is Due to a 'Hitchhiking' Interval that Refines the Genetic Effect of Idd5.4

机译:pIgR缺陷NOD小鼠自身免疫性糖尿病的增加是由于“搭便车”区间改善了Idd5.4的遗传效应

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摘要

Selective breeding to introduce a gene mutation from one mouse strain onto the genetic background of another strain invariably produces "hitchhiking" (i.e. flanking) genomic intervals, which may independently affect a disease trait of interest. To investigate a role for the polymeric Ig receptor in autoimmune diabetes, a congenic nonobese diabetic (NOD) mouse strain was generated that harbors a Pigr null allele derived from C57BL/6 (B6) mice. These pIgR-deficient NOD mice exhibited increased serum IgA along with an increased diabetes incidence. However, the Pigr null allele was encompassed by a relatively large "hitchhiking" genomic interval that was derived from B6 mice and overlaps Idd5.4, a susceptibility locus for autoimmune diabetes. Additional congenic NOD mouse strains, harboring smaller B6-derived intervals, confirmed Idd5.4 independently of the other three known susceptibility loci on chromosome 1, and further localized Idd5.4 to an interval proximal to Pigr. Moreover, these congenic NOD mice showed that B6 mice harbor a more diabetogenic allele than NOD mice for this locus. The smallest B6-derived interval encompassing the Pigr null allele may, however, confer a small degree of protection against diabetes, but this protection appears to be dependent on the absence of the diabetogenic B6 allele for Idd5.4. This study provides another example of the potential hidden effects of "hitchhiking" genomic intervals and how such intervals can be used to localize disease susceptibility loci.
机译:将一种小鼠品系的基因突变引入另一种品系的遗传背景的选择性育种始终会产生“搭便车”(即侧翼)基因组间隔,这可能独立影响目标疾病特征。为了研究聚合酶Ig受体在自身免疫性糖尿病中的作用,产生了一个具有来自C57BL / 6(B6)小鼠的Pigr空等位基因的同基因非肥胖糖尿病(NOD)小鼠品系。这些pIgR缺陷型NOD小鼠的血清IgA升高,糖尿病发病率也升高。但是,Pigr无效等位基因由相对较大的“搭便车”基因组区间所涵盖,该区间源自B6小鼠,并且与Idd5.4(自身免疫性糖尿病的易感基因座)重叠。携带较小B6间隔的其他同质NOD小鼠品系独立于1号染色体上的其他三个已知的易感基因座,确认了Idd5.4,并将Idd5.4进一步定位到Pigr附近的一个间隔。而且,这些同基因的NOD小鼠显示,对于该基因座,B6小鼠比NOD小鼠具有更多的致糖尿病等位基因。但是,包含Pigr无效等位基因的最小B6衍生区间可能会赋予针对糖尿病的少量保护,但这种保护似乎取决于Idd5.4是否缺乏致糖尿病性B6等位基因。这项研究提供了另一个例子,说明“搭便车”基因组间隔的潜在隐患以及如何使用这种间隔来定位疾病易感基因座。

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