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Updated: Dec 25, 2025

Human Neural Organoids for Studying Brain Cancer and Neurodegenerative Diseases
Published on: June 28, 2019
MYORG-related disease is associated with central pontine calcifications and atypical parkinsonism
Viorica Chelban1, Miryam Carecchio1, Gillian Rea1
1Department of Neuromuscular Diseases (V.C., S.E., L.S., J.V., V.S., N.W.W., H.H.), UCL Queen Square Institute of Neurology; National Hospital for Neurology and Neurosurgery (V.C., S.E., L.S., J.V., V.S., N.W.W., H.H.), Queen Square, London, UK; Department of Neurology and Neurosurgery (V.C., S.G.), Institute of Emergency Medicine, Chisinau, Republic of Moldova; Department of Neuroscience (M.C.), University of Padua, Italy; Northern Ireland Regional Genetics Service (G.R., P.J.M.), Belfast City Hospital, UK; Department of Neuroscience (A.B.), Interdisciplinary Center (IDC) Herzliya, Israel; Department of Paediatrics & Child Health (S.K., F.J., S.I., F.K., Z.Q.), Aga Khan University, Karachi, Pakistan; Department of Neurology (L.M.), Eastern Piedmont University, Novara, Italy; Department of Neurology (E.S., D.P.) and Department of Neuroradiology (L.C.), Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy; Department of Clinical Neurology (N.B.), University of Nottingham, UK; Department of Clinical and Movement Neurosciences (B.B., K.P.B., N.W.W.), UCL Queen Square Institute of Neurology, London, UK; Department of Neurology (B.B.), Heidelberg University Hospital, Germany; Reta Lila Weston Institute (A.L.), UCL Queen Square Institute of Neurology, London, UK; and Medical Genetics and Neurogenetics Unit (B.G.), Fondazione IRCCS Istituto Neurologico Carlo Besta, Milan, Italy.
Objective:
To identify the phenotypic, neuroimaging, and genotype-phenotype expression of MYORG mutations.
Methods:
Using next-generation sequencing, we screened 86 patients with primary familial brain calcification (PFBC) from 60 families with autosomal recessive or absent family history that were negative for mutations in SLC20A2, PDGFRB, PDGBB, and XPR1. In-depth phenotyping and neuroimaging investigations were performed in all cases reported here.
Results:
We identified 12 distinct deleterious MYORG variants in 7 of the 60 families with PFBC. Overall, biallelic MYORG mutations accounted for 11.6% of PFBC families in our cohort. A heterogeneous phenotypic expression was identified within and between families with a median age at onset of 56.4 years, a variable combination of parkinsonism, cerebellar signs, and cognitive decline. Psychiatric disturbances were not a prominent feature. Cognitive assessment showed impaired cognitive function in 62.5% of cases. Parkinsonism associated with vertical nuclear gaze palsy was the initial clinical presentation in 1/3 of cases and was associated with central pontine calcifications. Cerebral cortical atrophy was present in 37% of cases.
Conclusions:
This large, multicentric study shows that biallelic MYORG mutations represent a significant proportion of autosomal recessive PFBC. We recommend screening MYORG mutations in all patients with primary brain calcifications and autosomal recessive or negative family history, especially when presenting clinically as atypical parkinsonism and with pontine calcification on brain CT.
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