An Ultra-Rare Mixed Phenotype with Combined AP-4 and ERF Mutations: The First Report in a Pediatric Patient and a
Alessandro Orsini1, Andrea Santangelo1,2, Alessandra Carmignani3
1Pediatric Neurology, Pediatric Department, AOUP Santa Chiara Hospital, 56100 Pisa, Italy.
Insights
This study reports a rare case of a boy with psychomotor delay and intellectual disability due to mutations in the AP-4 and ERF genes. This highlights the importance of exome sequencing for diagnosing complex genetic disorders.
Area of Science:
- Genetics
- Neuroscience
- Molecular Biology
Background:
- Adaptor protein 4 (AP-4) complex is vital for protein trafficking.
- AP-4 mutations are linked to cerebral palsy and hereditary spastic paraparesis (HSP).
- Genetic factors underlying complex neurological phenotypes require further elucidation.
Abstract:
The adaptor protein 4 (AP-4) constitutes a conserved hetero-tetrameric complex within the family of adaptor protein (AP) complex, crucial for the signal-mediated trafficking of integral membrane proteins. Mutations affecting all subunits of the AP-4 complex have been linked to autosomal-recessive cerebral palsy and a complex hereditary spastic paraparesis (HSP) phenotype. Our report details the case of a 14-year-old boy born to consanguineous parents, presenting psychomotor delay, severe intellectual disability, microcephaly, and trigonocephaly. Despite a history of febrile seizures, subsequent years were devoid of seizures, with normal EEG. Exome sequencing revealed pathogenic variants in both the AP4B1 and ERF genes. Significantly, the patient exhibited features associated with AP4B1 mutations, including distinctive traits such as cranial malformations. The ERF gene variant, linked to craniosynostosis, likely contributes to the observed trigonocephaly. This case represents the initial documentation of a concurrent mutation in the AP4B1 and ERF genes, underscoring the critical role of exome analysis in unraveling complex phenotypes. Understanding these complex genotypes offers valuable insights into broader syndromic conditions, facilitating comprehensive patient management.
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