Neonatal presentation of COG6-CDG with prominent skin phenotype
Katalin Komlosi1, Selina Gläser1, Julia Kopp1
1Institute of Human Genetics, Medical Center University of Freiburg, Faculty of Medicine, University of Freiburg Freiburg Germany.
Insights
Genetic disorders like COG6-CDG pose challenges for diagnosis. This study identifies a severe case with prominent skin issues, highlighting the need to consider congenital disorders of glycosylation in newborns with severe genetic conditions.
Area of Science:
- Genetics
- Biochemistry
- Developmental Biology
Background:
- Autosomal recessive genetic disorders are a significant cause of perinatal mortality, presenting diagnostic and counseling challenges.
- Congenital Disorders of Glycosylation (CDG) exhibit diverse clinical presentations, from mild to fatal multisystemic disease.
- COG6-CDG, a rare subtype, results from COG6 gene mutations affecting Golgi function, typically causing developmental delay and organ dysfunction.
Observation:
- A Greek family experienced two neonatal deaths with features resembling restrictive dermopathy, severe arthrogryposis, and respiratory failure.
- Whole-exome sequencing identified a homozygous nonsense mutation (c.511C>T, p.(Arg171*)) in the COG6 gene in affected siblings.
- The observed severe ectodermal manifestations, including prominent skin findings at birth, were more pronounced than typically reported in COG6-CDG.
Findings:
- The study details a novel presentation of COG6-CDG with severe ectodermal abnormalities at birth, expanding the known phenotype.
- This case underscores the variability of COG6-CDG, particularly the manifestation and severity of skin findings.
- The identified c.511C>T variant in COG6 was previously associated with milder ectodermal symptoms, suggesting genotype-phenotype correlation nuances.
Implications:
- Early consideration of CDG is crucial for diagnosing severe neonatal conditions with complex phenotypes, including dermatological signs.
- Accurate genetic diagnosis of COG6-CDG enables targeted genetic counseling and reproductive options for affected families.
- This research contributes to understanding the phenotypic spectrum of COG6-CDG and the importance of comprehensive genetic evaluation in unexplained perinatal deaths.
Abstract:
Many of the genetic childhood disorders leading to death in the perinatal period follow autosomal recessive inheritance and bear specific challenges for genetic counseling and prenatal diagnostics. Often, affected children die before a genetic diagnosis can be established, thereby precluding targeted carrier testing in parents and prenatal or preimplantation genetic diagnosis in further pregnancies. The clinical phenotype of congenital disorders of glycosylation (CDG) is very heterogeneous and ranges from relatively mild symptoms to severe multisystem dysfunction and even a fatal course. A very rare subtype, COG6-CDG, is caused by deficiency of subunit 6 of the conserved oligomeric Golgi complex and is usually characterized by growth retardation, developmental delay, microcephaly, liver and gastrointestinal disease, joint contractures and episodic fever. It has been proposed that a distinctive feature of COG6-CDG can be ectodermal signs such as hypohidrosis/hyperthermia, hyperkeratosis and tooth anomalies. In a Greek family, who had lost two children in the neonatal period, with prominent skin features initially resembling restrictive dermopathy, severe arthrogryposis, respiratory insufficiency and a rapid fatal course trio whole-exome sequencing revealed the homozygous nonsense mutation c.511C>T, p.(Arg171*) in the COG6 gene. Skin manifestations such as dry skin and hyperkeratosis have been reported in only five out of the 21 reported COG6-CDG cases so far, including two patients with the c.511C>T variant in COG6 but with milder ectodermal symptoms. Our case adds to the phenotypic spectrum of COG6-CDG with prominent ectodermal manifestations at birth and underlines the importance of considering CDG among the possible causes for congenital syndromic genodermatoses.
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