
To identify the genetic cause for a 11-year-old Chinese boy with Meier-Gorlin syndrome (MGS).Chromosomal microarray analysis (CMA) was used to detect potential variations, while whole exome sequencing (WES) was used to identify sequence variants. Sanger sequencing was used to confirm the suspected variants.The boy has featured short stature, microtia, small patella, slender body build, craniofacial anomalies, and small testes with normal gonadotropin. A complete uniparental disomy of chromosome 16 was revealed by CMA. WES has identified a novel homozygous mutation c.67A>G (p.Lys23Glu) in ORC6 gene mapped to chromosome 16. As predicted by Alamut functional software, the mutation may affect the function of structural domain of the ORC6 protein.The patient is probably the first diagnosed MGS case in China, who carried a novel homozygous mutation of the ORC6 gene and uniparental disomy of chromosome 16. The effect of this novel mutation on the growth and development needs to be further investigated.
Family Health, Male, Heterozygote, Base Sequence, Micrognathism, Origin Recognition Complex, Patella, Sequence Analysis, DNA, Uniparental Disomy, Polymerase Chain Reaction, Fathers, Mutation, Humans, Child, Chromosomes, Human, Pair 16, Growth Disorders, Congenital Microtia
Family Health, Male, Heterozygote, Base Sequence, Micrognathism, Origin Recognition Complex, Patella, Sequence Analysis, DNA, Uniparental Disomy, Polymerase Chain Reaction, Fathers, Mutation, Humans, Child, Chromosomes, Human, Pair 16, Growth Disorders, Congenital Microtia
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