Department of Pediatrics, Hokkaido University School of Medicine, Sapporo, Japan.
Tohoku J Exp Med. 2011 Feb;223(2):113-8. doi: 10.1620/tjem.223.113.
Maturity-onset diabetes of the young (MODY) is a genetically and clinically heterogeneous type of diabetes mellitus, characterized by early onset (often before 25 years of age) and absence of pancreatic autoimmunity markers. Paired-homeodomain transcription factor 4 (PAX4) functions as a transcriptional repressor and is involved in the differentiation of insulin-secreting β-cells. Here we identified a novel PAX4 mutation in a Japanese patient with MODY. A 15-year-old, non-obese boy was admitted to our hospital because of polyuria and polydipsia. Laboratory evaluation showed an elevated fasting glucose level; however, islet cell antibodies and glutamic acid decarboxylase antibodies were not detected in the patient's serum. The proband's father had been diagnosed as having type 2 diabetes at age of 30 years. We therefore analyzed several candidate genes of MODY, and identified a novel mutation of a 39-base heterozygous deletion in exon 3 (c.374-412 del39) of PAX4 in the proband and his father. This mutation may cause exon 3 skipping that results in a frameshift, thereby producing a premature stop codon in exon 5. As this mutant PAX4 lacks a part of the homeodomain that is critical for binding to the target gene, this mutant was thought to lose the transcriptional repressor function. As expected, luciferase-reporter assays revealed that the mutant PAX4 could not repress the activities of insulin and glucagon gene promoters, unlike the wild-type PAX4 that repressed the promoter activities. The present study demonstrates that a novel mutation of PAX4 is likely to be associated with diabetes in this Japanese family.
青少年发病的成年型糖尿病(MODY)是一种遗传和临床异质性的糖尿病,其特征为发病早(常在 25 岁之前)且无胰岛自身免疫标志物。配对同源结构域转录因子 4(PAX4)作为转录抑制剂,参与胰岛素分泌β细胞的分化。在这里,我们在一位 MODY 日本患者中鉴定出一种新型 PAX4 突变。一位 15 岁的非肥胖男孩因多尿和多饮而被收入我院。实验室评估显示空腹血糖水平升高;然而,患者血清中未检测到胰岛细胞抗体和谷氨酸脱羧酶抗体。先证者的父亲在 30 岁时被诊断为 2 型糖尿病。因此,我们分析了几个 MODY 的候选基因,并在先证者及其父亲中鉴定出 PAX4 外显子 3 中 39 个碱基杂合缺失(c.374-412del39)的新型突变。这种突变可能导致外显子 3 跳跃,从而导致外显子 5 产生移码,从而产生过早的终止密码子。由于这种突变的 PAX4 缺乏与靶基因结合的同源结构域的一部分,因此认为其丧失了转录抑制剂的功能。正如预期的那样,荧光素酶报告基因检测表明,与野生型 PAX4 抑制启动子活性不同,突变型 PAX4 不能抑制胰岛素和胰高血糖素基因启动子的活性。本研究表明,PAX4 的新型突变可能与该日本家族的糖尿病有关。