Genome-wide DNA methylation analysis of transient neonatal diabetes type 1 patients with mutations in ZFP57

被引:28
作者
Bak, Mads [1 ]
Boonen, Susanne E. [1 ,2 ]
Dahl, Christina [3 ]
Hahnemann, Johanne M. D. [2 ]
Mackay, Deborah J. D. G. [4 ,6 ]
Tumer, Zeynep [2 ,7 ]
Gronskov, Karen [2 ]
Temple, I. Karen [4 ,5 ]
Guldberg, Per [3 ]
Tommerup, Niels [1 ]
机构
[1] Univ Copenhagen, Panum Inst, Wilhelm Johannsen Ctr Funct Genome Res, Inst Cellular & Mol Med, DK-2200 Copenhagen N, Denmark
[2] Kennedy Ctr, Ctr Appl Human Mol Genet, DK-2600 Glostrup, Denmark
[3] Danish Canc Soc, Inst Canc Biol, DK-2100 Copenhagen O, Denmark
[4] Univ Southampton, Human Genet & Genom Med, Fac Med, Southampton SO16 6YD, Hants, England
[5] Southampton Univ Hosp Trust, Wessex Clin Genet Serv, Southampton SO16 5YA, Hants, England
[6] Salisbury NHS Fdn Trust, Salisbury Dist Hosp, Wessex Reg Genet Lab, Salisbury SP2 8BJ, Wilts, England
[7] Univ Copenhagen, Panum Inst, Inst Cellular & Mol Med, DK-2200 Copenhagen N, Denmark
关键词
Next-generation sequencing; Imprinting disorder; Transient neonatal diabetes; DNA methylation; MULTIPLE IMPRINTED LOCI; MONOALLELIC EXPRESSION; ANALYSIS REVEALS; STEM-CELLS; REGIONS; IASPP; GENE; HYPOMETHYLATION; WIDESPREAD; MELLITUS;
D O I
10.1186/s12881-016-0292-4
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Background: Transient neonatal diabetes mellitus 1 (TNDM1) is a rare imprinting disorder characterized by intrautering growth retardation and diabetes mellitus usually presenting within the first six weeks of life and resolves by the age of 18 months. However, patients have an increased risk of developing diabetes mellitus type 2 later in life. Transient neonatal diabetes mellitus 1 is caused by overexpression of the maternally imprinted genes PLAGL1 and HYMAI on chromosome 6q24. One of the mechanisms leading to overexpression of the locus is hypomethylation of the maternal allele of PLAGL1 and HYMAI. A subset of patients with maternal hypomethylation at PLAGL1 have hypomethylation at additional imprinted loci throughout the genome, including GRB10, ZIM2 (PEG3), MEST (PEG1), KCNQ1OT1 and NESPAS (GNAS-AS1). About half of the TNDM1 patients carry mutations in ZFP57, a transcription factor involved in establishment and maintenance of methylation of imprinted loci. Our objective was to investigate whether additional regions are aberrantly methylated in ZFP57 mutation carriers. Methods: Genome-wide DNA methylation analysis was performed on four individuals with homozygous or compound heterozygous ZFP57 mutations, three relatives with heterozygous ZFP57 mutations and five controls. Methylation status of selected regions showing aberrant methylation in the patients was verified using bisulfite-sequencing. Results: We found large variability among the patients concerning the number and identity of the differentially methylated regions, but more than 60 regions were aberrantly methylated in two or more patients and a novel region within PPP1R13L was found to be hypomethylated in all the patients. The hypomethylated regions in common between the patients are enriched for the ZFP57 DNA binding motif. Conclusions: We have expanded the epimutational spectrum of TNDM1 associated with ZFP57 mutations and found one novel region within PPP1R13L which is hypomethylated in all TNDM1 patients included in this study. Functional studies of the locus might provide further insight into the etiology of the disease.
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