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1.
J Pediatr Genet ; 9(3): 207-210, 2020 Sep.
Article in English | MEDLINE | ID: mdl-32714624

ABSTRACT

Pallister-Killian syndrome (PKS) is a rare sporadic genetic disorder caused by a mosaic tetrasomy of chromosome 12p, which mainly manifests with craniofacial dysmorphism, intellectual disability (ID), auditory disturbance, epilepsy, and a variety of congenital malformations. The diagnosis of PKS can be complicated due to the phenotypic variation, and an overlap with other syndromes makes the molecular cytogenetic test necessary for a correct diagnosis. We identified two unrelated patients with typical facial features of PKS, including bitemporal alopecia, hypertelorism, and abnormal ears. Furthermore, the two patients had pigmentary skin anomalies, broad and short hands and fingers, and hypotonia. However, they differed in the degree of ID and ophthalmological findings. Patient 1 showed profound ID and poor macular function, whereas patient 2 had moderate ID and normal fundus. Mosaic tetrasomy of chromosome 12p was found in 40 and 25% of the cells of patients 1 and 2, respectively, by fluorescent in situ hybridization of cultured skin fibroblasts. The higher percentage of mosaic cells with tetrasomy 12p found in patient 1 may explain the severe phenotype. This report expands the clinical manifestations of PKS and highlights the variable expressivity of clinical features in relation to the cytogenetics findings.

2.
J Pediatr Genet ; 9(3): e1, 2020 Sep.
Article in English | MEDLINE | ID: mdl-36644229

ABSTRACT

[This corrects the article DOI: 10.1055/s-0039-3400489.].

3.
Nat Genet ; 47(5): 528-34, 2015 May.
Article in English | MEDLINE | ID: mdl-25848753

ABSTRACT

Pediatric-onset ataxias often present clinically as developmental delay and intellectual disability, with prominent cerebellar atrophy as a key neuroradiographic finding. Here we describe a new clinically distinguishable recessive syndrome in 12 families with cerebellar atrophy together with ataxia, coarsened facial features and intellectual disability, due to truncating mutations in the sorting nexin gene SNX14, encoding a ubiquitously expressed modular PX domain-containing sorting factor. We found SNX14 localized to lysosomes and associated with phosphatidylinositol (3,5)-bisphosphate, a key component of late endosomes/lysosomes. Patient-derived cells showed engorged lysosomes and a slower autophagosome clearance rate upon autophagy induction by starvation. Zebrafish morphants for snx14 showed dramatic loss of cerebellar parenchyma, accumulation of autophagosomes and activation of apoptosis. Our results characterize a unique ataxia syndrome due to biallelic SNX14 mutations leading to lysosome-autophagosome dysfunction.


Subject(s)
Cerebellar Diseases/genetics , Cerebellum/pathology , Lysosomes/metabolism , Phagosomes/metabolism , Sorting Nexins/genetics , Spinocerebellar Ataxias/genetics , Animals , Atrophy/genetics , Autophagy , Child, Preschool , Female , Gene Frequency , Humans , Infant , Lod Score , Lysosomal Storage Diseases/genetics , Male , Mutation , Syndrome , Zebrafish
4.
Am J Med Genet A ; 164A(2): 480-3, 2014 Feb.
Article in English | MEDLINE | ID: mdl-24311025

ABSTRACT

Rhombencephalosynapsis (RES) is a rare hindbrain malformation that could occur in isolation or as a part of a syndrome for example, Gómez-López-Hernández syndrome (GLH) or VACTERL-H. We identified male patient with severe RES. Ventriculomegaly, agenesis of septum pellucidum, very thin corpus callosum with interhemispheric cyst were additional neuroimaging findings. He had brachyturricephaly, midface retrusion, low-set posteriorly rotated ears and bilateral parietal well circumscribed areas of alopecia. No corneal anesthesia was observed; thus, demonstrating many of the diagnostic criteria of GLH. Interestingly, he additionally had bilateral bipartite parietal bone (BPB) that is an extremely rare anomaly of the parietal sutures. This is the first co-occurrence of this rare anomaly with GLH. We believe the presence of this unique finding could represent an important clue for understanding the pathogenesis of this malformation.


Subject(s)
Abnormalities, Multiple/diagnosis , Alopecia/diagnosis , Cerebellum/abnormalities , Craniofacial Abnormalities/diagnosis , Growth Disorders/diagnosis , Neurocutaneous Syndromes/diagnosis , Rhombencephalon/abnormalities , Brain/pathology , Facies , Humans , Infant , Magnetic Resonance Imaging , Male , Parietal Bone/abnormalities , Skull/abnormalities , Tomography, X-Ray Computed
5.
Sci Transl Med ; 4(138): 138ra78, 2012 Jun 13.
Article in English | MEDLINE | ID: mdl-22700954

ABSTRACT

The translation of "next-generation" sequencing directly to the clinic is still being assessed but has the potential for genetic diseases to reduce costs, advance accuracy, and point to unsuspected yet treatable conditions. To study its capability in the clinic, we performed whole-exome sequencing in 118 probands with a diagnosis of a pediatric-onset neurodevelopmental disease in which most known causes had been excluded. Twenty-two genes not previously identified as disease-causing were identified in this study (19% of cohort), further establishing exome sequencing as a useful tool for gene discovery. New genes identified included EXOC8 in Joubert syndrome and GFM2 in a patient with microcephaly, simplified gyral pattern, and insulin-dependent diabetes. Exome sequencing uncovered 10 probands (8% of cohort) with mutations in genes known to cause a disease different from the initial diagnosis. Upon further medical evaluation, these mutations were found to account for each proband's disease, leading to a change in diagnosis, some of which led to changes in patient management. Our data provide proof of principle that genomic strategies are useful in clarifying diagnosis in a proportion of patients with neurodevelopmental disorders.


Subject(s)
Exome/genetics , Female , Humans , Male , Mutation , Pedigree , Sequence Analysis, DNA , Vesicular Transport Proteins/genetics
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