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Transient neonatal diabetes mellitus in a Turkish patient with three novel homozygous variants in the ZFP57 gene.


ABSTRACT: Neonatal diabetes mellitus (NDM) is a rare form of diabetes that presents within the first six months of life. Nearly 70% of these cases have loss of methylation at the differentially methylated region on chromosome 6q24. To describe the findings in a Turkish male patient with NDM caused by a loss of methylation at chromosome 6q24 and three novel homozygous mutations in the ZFP57 gene, methylation-specific PCR was carried out at 6q24 and mutation analysis of ZFP57 gene was maintained by direct sequencing. Sequencing of ZFP57 gene revealed the hypomethylation of chromosome 6q24 and three novel mutations (chr6:29.641.413 A>T, 29.641.073 C>T, and 29.640.855 G>C), respectively. The latter mutation seems to display the patient's condition due to a highly conservative amino acid substitution in the protein. We suggest the ZFP57 gene as a causative factor for NDM and it should be considered in genetic testing. Further studies including functional analysis of the detected mutations will provide precise information regarding the effect of the mutations.

SUBMITTER: Boyraz M 

PROVIDER: S-EPMC3701919 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Transient neonatal diabetes mellitus in a Turkish patient with three novel homozygous variants in the ZFP57 gene.

Boyraz Mehmet M   Ulucan Korkut K   Taşkın Necati N   Akçay Teoman T   Flanagan Sarah E SE   Mackay Deborah J G DJ  

Journal of clinical research in pediatric endocrinology 20130101 2


Neonatal diabetes mellitus (NDM) is a rare form of diabetes that presents within the first six months of life. Nearly 70% of these cases have loss of methylation at the differentially methylated region on chromosome 6q24. To describe the findings in a Turkish male patient with NDM caused by a loss of methylation at chromosome 6q24 and three novel homozygous mutations in the ZFP57 gene, methylation-specific PCR was carried out at 6q24 and mutation analysis of ZFP57 gene was maintained by direct s  ...[more]

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