Ikegami H, Makino S, Yamato E, Kawaguchi Y, Ueda H, Sakamoto T, Takekawa K, Ogihara T
Department of Geriatric Medicine, Osaka University Medical School, Japan.
J Clin Invest. 1995 Oct;96(4):1936-42. doi: 10.1172/JCI118239.
The number and exact locations of the major histocompatibility complex (MHC)-linked diabetogenic genes (Idd-1) are unknown because of strong linkage disequilibrium within the MHC. By using a congenic NOD mouse strain that possesses a recombinant MHC from a diabetes-resistant sister strain, we have now shown that Idd-1 consists of at least two components, one in and one outside the class II A and E regions. A new susceptibility gene (Idd-16) was mapped to the < 11-centiMorgan segment of chromosome 17 adjacent to, but distinct from, previously known Idd-1 candidates, class II A, E, and Tap genes. The coding sequences and splicing donor and acceptor sequences of the Tnfa gene, a candidate gene for Idd-16, were identical in the NOD, CTS, and BALB/c alleles, ruling out amino acid changes in the TNF molecule as a determinant of insulin-dependent diabetes mellitus susceptibility. Our results not only map a new MHC-linked diabetogenic gene(s) but also suggest a new way to fine map disease susceptibility genes within a region where strong linkage disequilibrium exists.
由于主要组织相容性复合体(MHC)内存在强烈的连锁不平衡,与MHC连锁的致糖尿病基因(Idd-1)的数量和确切位置尚不清楚。通过使用一种同源NOD小鼠品系,该品系拥有来自抗糖尿病姐妹品系的重组MHC,我们现在已经表明,Idd-1至少由两个成分组成,一个在II类A和E区域内,另一个在该区域外。一个新的易感基因(Idd-16)被定位到17号染色体小于11厘摩的区段,与先前已知的Idd-1候选基因II类A、E和Tap基因相邻,但又不同。Idd-16的候选基因Tnfa基因的编码序列以及剪接供体和受体序列在NOD、CTS和BALB/c等位基因中是相同的,排除了TNF分子中的氨基酸变化作为胰岛素依赖型糖尿病易感性的决定因素。我们的结果不仅定位了一个新的与MHC连锁的致糖尿病基因,还提出了一种在存在强烈连锁不平衡的区域内精细定位疾病易感基因的新方法。