Cerebroretinal Microangiopathy With Calcifications and Cysts Associated With CTC1 and NDP Mutations

Author:

Romaniello Romina1,Arrigoni Filippo2,Citterio Andrea3,Tonelli Alessandra3,Sforzini Cinzia4,Rizzari Carmelo5,Pessina Marco1,Triulzi Fabio2,Bassi Maria Teresa3,Borgatti Renato1

Affiliation:

1. Department of Child Neuropsychiatry and Neurorehabilitation, “Eugenio Medea” Scientific Institute, Bosisio Parini, Lecco, Italy

2. Neuroimaging Unit, “Eugenio Medea” Scientific Institute, Bosisio Parini, Lecco, Italy

3. Laboratory of Molecular Biology, “Eugenio Medea” Scientific Institute, Bosisio Parini, Lecco, Italy

4. Paediatric Unit Valduce Hospital, Como, Italy

5. Paediatric Unit Policlinico, San Gerardo Monza, Italy

Abstract

Mutations in the conserved telomere maintenance component 1 ( CTC1) gene were recently described in Coats plus syndrome and in cerebroretinal microangiopathy with calcifications and cysts. Norrie disease protein ( NDP) gene was found mutated in Norrie disease, in Familial Exudative Vitreoretinopathy, and in Coats syndrome. Here we describe a boy affected by Norrie disease who developed typical features of cerebroretinal microangiopathy with calcifications and cysts. Direct sequencing of the CTC1 and NDP genes in this patient shows the presence of compound heterozygosity for 2 mutations in CTC1 (c.775G>A, pV259M and a novel microdeletion c.1213delG) and a missense mutation in the NDP gene (c.182T>C, p.L61P). Based on these genetic findings and on the expression of both genes in endothelial cells, we postulate that microangiopathy might be a primary underlying pathologic abnormality in cerebroretinal microangiopathy with calcifications and cysts. This hypothesis is further supported by magnetic resonance imaging (MRI) data showing multiple minute calcifications in the deep gray nuclei and in terminal arteriolar zones.

Publisher

SAGE Publications

Subject

Clinical Neurology,Pediatrics, Perinatology, and Child Health

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