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1.
Clin Dysmorphol ; 26(1): 1-12, 2017 Jan.
Article in English | MEDLINE | ID: mdl-27547915

ABSTRACT

We present a novel multisystem disease in two siblings with clinical features resembling a lysosomal storage disease. These included coarse face, dysostosis multiplex, respiratory difficulty, proteinuria with glomerular foamy cells, neurological involvement with developmental delays, pyramidal signs, and severe chronic anemia. Detailed enzymatic analysis for lysosomal diseases and whole-exome sequencing studies excluded known lysosomal storage diseases in the proband. Subsequently, genome-wide genotyping and exome sequencing analysis of the family indicated two large homozygous regions on chromosomes 5 and 12, and strongly suggested that a homozygous p. R498W missense mutation in the VPS33A gene might be responsible for this novel disease. Segregation analysis in family members and mutation prediction tools' results also supported the damaging effect of the missense mutation on the function of the Vps33a protein, which plays a role in the vesicular transport system. Electron microscopic studies of the cornea of the proband showed findings supportive of dysfunction in vesicular transport. The clinical phenotype and genetic studies support the suggestion that the siblings most probably have a novel disease very likely caused by a VPS33A gene defect.


Subject(s)
Genetic Association Studies , Lysosomal Storage Diseases/diagnosis , Lysosomal Storage Diseases/genetics , Mutation , Phenotype , Vesicular Transport Proteins/genetics , Biopsy , Bone and Bones/diagnostic imaging , Bone and Bones/pathology , Child, Preschool , Facies , Fatal Outcome , Female , Humans , Infant , Pedigree , Radiography , Siblings , Syndrome , Tomography, X-Ray Computed
2.
Hum Mol Genet ; 24(19): 5378-87, 2015 Oct 01.
Article in English | MEDLINE | ID: mdl-26162852

ABSTRACT

POC1A encodes a WD repeat protein localizing to centrioles and spindle poles and is associated with short stature, onychodysplasia, facial dysmorphism and hypotrichosis (SOFT) syndrome. These main features are related to the defect in cell proliferation of chondrocytes in growth plate. In the current study, we aimed at identifying the molecular basis of two patients with primordial dwarfism (PD) in a single family through utilization of whole-exome sequencing. A novel homozygous p.T120A missense mutation was detected in POC1A in both patients, a known causative gene of SOFT syndrome, and confirmed using Sanger sequencing. To test the pathogenicity of the detected mutation, primary fibroblast cultures obtained from the patients and a control individual were used. For evaluating the global gene expression profile of cells carrying p.T120A mutation in POC1A, we performed the gene expression array and compared their expression profiles to those of control fibroblast cells. The gene expression array analysis showed that 4800 transcript probes were significantly deregulated in cells with p.T120A mutation in comparison to the control. GO term association results showed that deregulated genes are mostly involved in the extracellular matrix and cytoskeleton. Furthermore, the p.T120A missense mutation in POC1A caused the formation of abnormal mitotic spindle structure, including supernumerary centrosomes, and changes in POC1A were accompanied by alterations in another centrosome-associated WD repeat protein p80-katanin. As a result, we identified a novel mutation in POC1A of patients with PD and showed that this mutation causes the formation of multiple numbers of centrioles and multipolar spindles with abnormal chromosome arrangement.


Subject(s)
Centrioles/metabolism , Dwarfism/genetics , Mutation, Missense , Proteins/genetics , Sequence Analysis, DNA/methods , Cell Cycle Proteins , Cells, Cultured , Child , Chromosome Aberrations , Cytoskeletal Proteins , Exome , Female , Fibroblasts/cytology , Humans , Male , Phorbols , Skin/cytology
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