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1型糖尿病基因座Idd3在小鼠3号染色体780kb区域的同基因定位:通过单倍型定位鉴定祖先DNA的候选片段。

Congenic mapping of the type 1 diabetes locus, Idd3, to a 780-kb region of mouse chromosome 3: identification of a candidate segment of ancestral DNA by haplotype mapping.

作者信息

Lyons P A, Armitage N, Argentina F, Denny P, Hill N J, Lord C J, Wilusz M B, Peterson L B, Wicker L S, Todd J A

机构信息

Department of Medical Genetics, Wellcome Trust Centre for the Study of Molecular Mechanisms in Disease, University of Cambridge, UK.

出版信息

Genome Res. 2000 Apr;10(4):446-53. doi: 10.1101/gr.10.4.446.

Abstract

Type 1 diabetes in the nonobese diabetic (NOD) mouse arises as a consequence of T cell-mediated destruction of the insulin-producing beta cells of the pancreas. Although little is known of the events that initiate and subsequently drive beta-cell destruction it is clear that the entire process is under complex genetic control. At present 19 loci have been mapped that influence the development of diabetes either at the level of initiation of insulitis or at the level of progression from insulitis to overt diabetes, or both. Previously, we have mapped one of these loci, Idd3, to a 0.35-cM interval on proximal mouse chromosome 3. In the present study we have narrowed the map position of this locus to an interval of 0.15 cM by a combination of novel congenic strains and an ancestral haplotype analysis approach. We have constructed a physical contig in bacterial artificial chromosome (BAC) clones across the minimal interval. Restriction mapping of the BAC contig placed the maximum size of the Idd3 interval at 780 kb between the markers D3Nds36 and D3Nds76. To refine further the Idd3 interval we developed a series of novel single nucleotide polymorphisms (SNPs) and carried out haplotype analysis on DNA from mouse strains known to carry either Idd3 susceptibility or protective alleles. This haplotype analysis identified a 145-kb segment of ancestral DNA between the microsatellite marker D3Nds6 and the SNP 81.3. One haplotype of this ancestral segment of DNA is found in mouse strains carrying an Idd3 susceptibility allele and another is found in mouse strains carrying an Idd3 protective allelle. Within the 780-kb congenically defined interval this 145-kb segment represents the most likely location for Idd3. The Il2 gene, which encodes the cytokine interleukin 2 (IL2), maps to this interval and is a strong candidate for Idd3. To investigate whether sequence variation exists in the promoter region of the Il2 gene, which might alter its expression, we sequenced the promoter region of the Il2 gene from mouse strains carrying either an Idd3 susceptibility or resistance allele. Two sequence variants were identified, neither of which fell in known regulatory elements within the Il2 promoter. In agreement with this observation steady-state Il2 mRNA levels showed no variation between susceptible and resistant mouse strains. These data suggest that the profound protection from diabetes seen in congenic mice carrying an Idd3 protective allele is unlikely to be due to differences in the level of expression of the Il2 gene. Instead, all of the current data support our hypothesis that Idd3 corresponds to amino acid variation at the amino terminus of Il2.

摘要

非肥胖型糖尿病(NOD)小鼠中的1型糖尿病是胰腺中产生胰岛素的β细胞受到T细胞介导破坏的结果。尽管对于引发并随后驱动β细胞破坏的事件了解甚少,但很明显整个过程受复杂的基因控制。目前已定位了19个基因座,它们在胰岛炎起始水平或从胰岛炎发展为显性糖尿病的水平,或在这两个水平上影响糖尿病的发展。此前,我们已将其中一个基因座Idd3定位到小鼠近端3号染色体上0.35厘摩的区间。在本研究中,我们通过新型同源近交系和祖先单倍型分析方法相结合,将该基因座的图谱位置缩小到0.15厘摩的区间。我们构建了跨越最小区间的细菌人工染色体(BAC)克隆的物理重叠群。BAC重叠群的限制性图谱显示Idd3区间的最大大小在标记D3Nds36和D3Nds76之间为780 kb。为了进一步细化Idd3区间,我们开发了一系列新型单核苷酸多态性(SNP),并对已知携带Idd3易感或保护等位基因的小鼠品系的DNA进行单倍型分析。这种单倍型分析确定了微卫星标记D3Nds6和SNP 81.3之间145 kb的祖先DNA片段。在携带Idd3易感等位基因的小鼠品系中发现了该祖先DNA片段的一种单倍型,在携带Idd3保护等位基因的小鼠品系中发现了另一种单倍型。在780 kb的同源定义区间内,这个145 kb的片段代表Idd3最可能的位置。编码细胞因子白细胞介素2(IL2)的Il2基因定位于此区间,是Idd3的有力候选基因。为了研究Il2基因启动子区域是否存在可能改变其表达的序列变异,我们对携带Idd3易感或抗性等位基因的小鼠品系的Il2基因启动子区域进行了测序。鉴定出两个序列变异,它们均未落在Il2启动子内已知的调控元件中。与这一观察结果一致,稳态Il2 mRNA水平在易感和抗性小鼠品系之间没有差异。这些数据表明,携带Idd3保护等位基因的同源小鼠中对糖尿病的深度保护不太可能是由于Il2基因表达水平的差异。相反,目前所有数据均支持我们的假设,即Idd3对应于Il2氨基末端的氨基酸变异。

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