Fatal congenital copper transport defect caused by a homozygous likely pathogenic variant of SLC31A1.

Christof Dame, Denise Horn, Lutz Schomburg, Johannes Grünhagen, Thilo Samson Chillon, Anna Tietze, Annika Vogt, Christoph Bührer

Journal: Clinical genetics 2023;103(5):585-589

PMID: 36562171

Abstract

Known hereditary human diseases featuring impaired copper trafficking across cellular membranes involve ATP7A (Menkes disease, occipital horn disease, X-linked spinal muscular atrophy type 3) and ATP7B (Wilson disease). Herein, we report a newborn infant of consanguineous parents with a homozygous pathogenic variant in a highly conserved sequence of SLC31A1, coding for the copper influx transporter 1, CTR1. This missense variant, c.236T > C, was detected by whole exome sequencing. The infant was born with pulmonary hypoplasia and suffered from severe respiratory distress immediately after birth, necessitating aggressive mechanical ventilation. At 2 weeks of age, multifocal brain hemorrhages were diagnosed by cerebral ultrasound and magnetic resonance imaging, together with increased tortuosity of cerebral arteries. Ensuing seizures were only partly controlled by antiepileptic drugs, and the infant became progressively comatose. Laboratory investigations revealed very low serum concentrations of copper and ceruloplasmin. No hair shaft abnormalities were detected by dermatoscopy or light microscopic analyses of embedded hair shafts obtained at 4 weeks of life. The infant died after redirection of care and elective cessation of invasive mechanical ventilation at 1 month of age. This case adds SLC31A1 to the genes implicated in severe hereditary disorders of copper transport in humans.

© 2022 The Authors. Clinical Genetics published by John Wiley & Sons Ltd.

Address: Department of Neonatology, Charité Universitätsmedizin Berlin, Berlin, Germany.; Department of Human Genetics, Charité Universitätsmedizin Berlin, Berlin, Germany.; Department of Experimental Endocrinology, Charité Universitätsmedizin Berlin, Berlin, Germany.; Department of Human Genetics, Charité Universitätsmedizin Berlin, Berlin, Germany.; Department of Human Genetics, Labor Berlin Charité Vivantes, Berlin, Germany.; Department of Neuroradiology, Charité Universitätsmedizin Berlin, Berlin, Germany.; Department of Dermatology, Charité Universitätsmedizin Berlin, Berlin, Germany.
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