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Positional Cloning of Zinc Finger Domain Transcription Factor Zfp69 , a Candidate Gene for Obesity-Associated Diabetes Contributed by Mouse Locus Nidd/SJL

机译:锌指结构域转录因子Zfp69(与肥胖相关的糖尿病的候选基因,由小鼠基因座Nidd / SJL贡献)的候选基因的位置克隆

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Polygenic type 2 diabetes in mouse models is associated with obesity and results from a combination of adipogenic and diabetogenic alleles. Here we report the identification of a candidate gene for the diabetogenic effect of a QTL (Nidd/SJL, Nidd1) contributed by the SJL, NON, and NZB strains in outcross populations with New Zealand Obese (NZO) mice. A critical interval of distal chromosome 4 (2.1 Mbp) conferring the diabetic phenotype was identified by interval-specific congenic introgression of SJL into diabetes-resistant C57BL/6J, and subsequent reporter cross with NZO. Analysis of the 10 genes in the critical interval by sequencing, qRT–PCR, and RACE–PCR revealed a striking allelic variance of Zfp69 encoding zinc finger domain transcription factor 69. In NZO and C57BL/6J, a retrotransposon (IAPLTR1a) in intron 3 disrupted the gene by formation of a truncated mRNA that lacked the coding sequence for the KRAB (Krüppel-associated box) and Znf-C2H2 domains of Zfp69, whereas the diabetogenic SJL, NON, and NZB alleles generated a normal mRNA. When combined with the B6.V-Lepob background, the diabetogenic Zfp69SJL allele produced hyperglycaemia, reduced gonadal fat, and increased plasma and liver triglycerides. mRNA levels of the human orthologue of Zfp69, ZNF642, were significantly increased in adipose tissue from patients with type 2 diabetes. We conclude that Zfp69 is the most likely candidate for the diabetogenic effect of Nidd/SJL, and that retrotransposon IAPLTR1a contributes substantially to the genetic heterogeneity of mouse strains. Expression of the transcription factor in adipose tissue may play a role in the pathogenesis of type 2 diabetes.
机译:小鼠模型中的多基因2型糖尿病与肥胖症有关,并且是由脂肪形成和糖尿病形成等位基因共同导致的。在这里,我们报告了由新西兰肥胖(NZO)小鼠的异质群体中SJL,NON和NZB菌株对QTL(Nidd / SJL,Nidd1)的促糖尿病作用的候选基因的鉴定。通过将SJL区间特异性共基因渗入耐糖尿病的C57BL / 6J中,并随后与NZO杂交,确定了赋予糖尿病表型的4号远端染色体的关键区间(2.1 Mbp)。通过测序,qRT-PCR和RACE-PCR分析了关键区间中的10个基因,发现编码锌指结构域转录因子69的Zfp69的等位基因突变非常明显。在NZO和C57BL / 6J中,内含子3中的逆转座子(IAPLTR1a)通过形成缺少Zfp69 KRAB(与Krüppel相关框)和Znf-C2H2结构域的编码序列的截短的mRNA来破坏基因,而致糖尿病的SJL,NON和NZB等位基因则产生正常的mRNA。当与B6.V-Lepob背景结合时,致糖尿病的Zfp69SJL等位基因产生高血糖症,减少了性腺脂肪,并增加了血浆和肝甘油三酸酯。 Zfp69的人类直系同源物ZNF642的mRNA水平在2型糖尿病患者的脂肪组织中显着增加。我们得出的结论是Zfp69是Nidd / SJL的致糖尿病作用的最可能候选者,而反转录转座子IAPLTR1a实质上有助于小鼠品系的遗传异质性。脂肪组织中转录因子的表达可能在2型糖尿病的发病机理中起作用。

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