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1.
Biosci Rep ; 40(1)2020 01 31.
Article in English | MEDLINE | ID: mdl-31904091

ABSTRACT

BACKGROUND: The USH2A gene encodes usherin, a basement membrane protein that is involved in the development and homeostasis of the inner ear and retina. Mutations in USH2A are linked to Usher syndrome type II (USH II) and non-syndromic retinitis pigmentosa (RP). Molecular diagnosis can provide insight into the pathogenesis of these diseases, facilitate clinical diagnosis, and identify individuals who can most benefit from gene or cell replacement therapy. Here, we report 21 pathogenic mutations in the USH2A gene identified in 11 Chinese families by using the targeted next-generation sequencing (NGS) technology. METHODS: In all, 11 unrelated Chinese families were enrolled, and NGS was performed to identify mutations in the USH2A gene. Variant analysis, Sanger validation, and segregation tests were utilized to validate the disease-causing mutations in these families. RESULTS: We identified 21 pathogenic mutations, of which 13, including 5 associated with non-syndromic RP and 8 with USH II, have not been previously reported. The novel variants segregated with disease phenotype in the affected families and were absent from the control subjects. In general, visual impairment and retinopathy were consistent between the USH II and non-syndromic RP patients with USH2A mutations. CONCLUSIONS: These findings provide a basis for investigating genotype-phenotype relationships in Chinese USH II and RP patients and for clarifying the pathophysiology and molecular mechanisms of the diseases associated with USH2A mutations.


Subject(s)
DNA Mutational Analysis , Extracellular Matrix Proteins/genetics , High-Throughput Nucleotide Sequencing , Retinitis Pigmentosa/genetics , Usher Syndromes/genetics , Adult , Asian People/genetics , Case-Control Studies , China , Female , Genetic Association Studies , Genetic Predisposition to Disease , Heredity , Humans , Male , Middle Aged , Pedigree , Phenotype , Retinitis Pigmentosa/diagnosis , Retinitis Pigmentosa/ethnology , Usher Syndromes/diagnosis , Usher Syndromes/ethnology , Young Adult
2.
Curr Eye Res ; 35(11): 1002-11, 2010 Nov.
Article in English | MEDLINE | ID: mdl-20958189

ABSTRACT

PURPOSE: In retinitis pigmentosa (RP), the slow and progressive death of inner retinal neurons is thought to be inevitable after the death of photoreceptors. However, even in the advanced stage of RP, all inner retinal neurons are not completely lost. The morphological and electrophysiological modifications in ON-retinal bipolar cells (ON-RBCs) of Royal College of Surgeons (RCS) rats (RCS-ON-RBCs) were investigated to elucidate the mechanisms of survival of RCS-ON-RBCs in RP. METHODS: Control (CTR) and RCS rats were divided into age groups according to postnatal stage: postnatal day 21 (Pn21d), postnatal day 30 (Pn30d), postnatal day 60 (Pn60d), and postnatal day 90 (Pn90d). Lucifer yellow staining of single ON-RBCs and double-immunofluorescence of the retinal frozen sections were used to detect the morphological modifications and loss of RCS-ON-RBCs in different retinal regions. The whole-cell patch clamping technique was used to record the electrophysiological properties of ON-RBCs. RESULTS: There was a significant loss of RCS-ON-RBCs compared with CTR (p < 0.01) at Pn60d. Loss of the RCS-ON-RBCs differed by region. From Pn60d onwards, the loss was more severe in the peripheral retinal regions (p < 0.01). From Pn21d, the ectopic neurites from the RCS-ON-RBCs reached the outer and inner nuclear layers. At Pn60d, terminal branches of RCS-ON-RBCs axons vanished and ectopic neurites from the RCS-ON-RBCs became entwined. The resting membrane potential, input resistance and outward membrane current amplitude of RCS-ON-RBCs were significantly higher than those of the ON-RBCs of CTR rats at Pn60d (p < 0.05). CONCLUSION: Our results indicate that more RCS-ON-RBCs survived in the central retinal area near cone clusters, potentially as a result of ectopic neuritis. Meanwhile the surviving RCS-ON-RBCs remained immature and had no normal electrophysiological characteristics.


Subject(s)
Retinal Bipolar Cells/physiology , Retinitis Pigmentosa/metabolism , Animals , Axons/physiology , Cell Survival/physiology , Electrophysiology , Fluorescent Antibody Technique, Indirect , Membrane Potentials/physiology , Neurites/physiology , Patch-Clamp Techniques , Rats , Rats, Mutant Strains , Retinitis Pigmentosa/pathology
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