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1.
Mol Vis ; 26: 345-354, 2020.
Article in English | MEDLINE | ID: mdl-32368002

ABSTRACT

Purpose: Familial amyloidosis of the Finnish type (FAF) is an inherited amyloidosis arising from mutations in the gelsolin protein (GSN). The disease includes facial paralysis, loose skin, and lattice corneal dystrophy. To date, FAF has been invariably associated with substitution of Asp214 in GSN. We describe the clinical, histopathological, and genetic features of a family with FAF due to a novel GSN mutation. Methods: Five affected adult individuals in a three-generation FAF pedigree were included in the study. Histopathological analysis was performed on an eyelid skin biopsy from one patient. Genetic analysis included next-generation sequencing (NGS) and Sanger sequencing for confirmation of the GSN variant. Several tools for in silico analysis of pathogenicity for the novel variant and to predict the effect of the amino acid replacement on protein stability were used. Results: Three older adult affected patients exhibited corneal lattice dystrophy, cutis laxa, and facultative peripheral neuropathy. Two younger adult individuals presented only with corneal amyloid deposits. NGS identified a heterozygous GSN c.1631T>G transversion, predicting a novel p.Met544Arg mutation. All in silico tools indicated that p.Met544Arg is deleterious for GSN functionality or stability. Conclusions: The results expand the molecular spectrum of GSN-linked systemic amyloidosis. The novel p.Met544Arg pathogenic variant is predicted to affect gelsolin function, presumably by impairing a potential calcium-sensitive, actin-binding region.


Subject(s)
Amyloid Neuropathies, Familial/genetics , Gelsolin/genetics , Adult , Amyloid/metabolism , Amyloid Neuropathies, Familial/blood , Amyloid Neuropathies, Familial/metabolism , Amyloid Neuropathies, Familial/pathology , Biopsy , Corneal Dystrophies, Hereditary/genetics , Cutis Laxa/genetics , Eyelids/cytology , Eyelids/metabolism , Eyelids/pathology , Family , Female , Gelsolin/metabolism , Heterozygote , High-Throughput Nucleotide Sequencing , Humans , Male , Middle Aged , Mutation , Nervous System Malformations/genetics , Pedigree , Phylogeny , Protein Stability
2.
Article in English | MEDLINE | ID: mdl-31736247

ABSTRACT

BACKGROUND: Retinal dystrophies (RDs) are one of the most genetically heterogeneous monogenic disorders with ~270 associated loci identified by early 2019. The recent application of next-generation sequencing (NGS) has greatly improved the molecular diagnosis of RD patients. Genetic characterization of RD cohorts from different ethnic groups is justified, as it would improve the knowledge of molecular basis of the disease. Here, we present the results of genetic analysis in a large cohort of 143 unrelated Mexican subjects with a variety of RDs. METHODS: A targeted NGS approach covering 199 RD genes was employed for molecular screening of 143 unrelated patients. In addition to probands, 258 relatives were genotyped by Sanger sequencing for familial segregation of pathogenic variants. RESULTS: A solving rate of 66% (95/143) was achieved, with evidence of extensive loci (44 genes) and allelic (110 pathogenic variants) heterogeneity. Forty-eight percent of the identified pathogenic variants were novel while ABCA4, CRB1, USH2A, and RPE65 carried the greatest number of alterations. Novel deleterious variants in IDH3B and ARL6 were identified, supporting their involvement in RD. Familial segregation of causal variants allowed the recognition of 124 autosomal or X-linked carriers. CONCLUSION: Our results illustrate the utility of NGS for genetic diagnosis of RDs of different populations for a better knowledge of the mutational landscape associated with the disease.


Subject(s)
Genetic Heterogeneity , Mutation , Retinal Dystrophies/genetics , ADP-Ribosylation Factors/genetics , ATP-Binding Cassette Transporters/genetics , Extracellular Matrix Proteins/genetics , Eye Proteins/genetics , Gene Frequency , Genotype , Humans , Isocitrate Dehydrogenase/genetics , Membrane Proteins/genetics , Mexico , Nerve Tissue Proteins/genetics , Retinal Dystrophies/pathology , cis-trans-Isomerases/genetics
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