4.6 Article

Prenatal diagnosis of PLP1 duplication by single nucleotide polymorphism array in a family with Pelizaeus-Merzbacher disease

期刊

AGING-US
卷 13, 期 1, 页码 1488-1497

出版社

IMPACT JOURNALS LLC
DOI: 10.18632/aging.202477

关键词

single nucleotide polymorphism array; gene duplication; PLP1; multiplex ligation-dependent probe amplification; prenatal diagnosis

资金

  1. Fujian Provincial Natural Science Foundation [2018J01235, 2017J01238]
  2. Youth Science Fund Project of Fujian Provincial Maternity and Children's Hospital Maternity [YCXQ 18-14]

向作者/读者索取更多资源

A family with a history of Pelizaeus-Merzbacher disease utilized SNP array technology for prenatal diagnosis, revealing that the male fetus did not have PLP1 gene duplication, unlike the affected boy and the mother. Further analysis showed that the non-duplicated infant is developing normally, confirming the reliability and accuracy of this technology in diagnosing PMD.
A family with a history of Pelizaeus-Merzbacher disease (PMD) received prenatal diagnosis of PLP1 gene duplication in a fetus using a single nucleotide polymorphism (SNP) array. A 27-year-old pregnant woman was referred for genetic counseling due to her four-year-old son being diagnosed with a suspected classic type of PMD. Amniocentesis was performed at 18 and 3/7 weeks of gestation, and the SNP array was carried out on DNA from the mother, her affected son, and fetus, then further confirmed by multiplex ligation-dependent probe amplification (MLPA). Cytogenetic analysis of the fetus showed 46,XY. SNP array analysis revealed that the male fetus did not carry PLP1 gene duplication but the affected boy did, and the mother was a carrier for the duplication of the PLP1 gene. All SNP array results were further confirmed by MLPA. SNP array and MLPA analyses of peripheral blood verified the nonduplication of the PLP1 gene in the infant after birth. At present, the child (without PLP1 duplication) is developing normally. This study preliminarily suggests that SNP array is a sensitive and accurate technology for identifying PLP1 duplication and is feasible for reliable diagnosis, including for the prenatal diagnosis of PMD resulting from PLP1 duplication.

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