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Compound heterozygous DYSF variants causing limb-girdle muscular dystrophy type 2B in a Chinese family
Liangshan Li1,2, Zhongcui Jing3, Lei Cheng4
1Medical Genetic Department, The Affiliated Hospital of Qingdao University, Qingdao, China.
Background:
The dysferlin gene or the DYSF gene encodes the Ca2+ -dependent phospholipid-binding protein dysferlin, which belongs to the ferlin family and is associated with muscle membrane regeneration and repair. Variants in the DYSF gene are responsible for limb-girdle muscular dystrophy type 2B (LGMD2B), also called limb-girdle muscular dystrophy recessive 2 (LGMDR2), a rare subtype of muscular dystrophy involving progressive muscle weakness and atrophy. The present study aimed to identify the variants responsible for the clinical symptoms of a Chinese patient with limb girdle muscular dystrophies (LGMDs) and to explore the genotype-phenotype associations of LGMD2B.
Methods:
A series of clinical examinations, including blood tests, magnetic resonance imaging scans for the lower legs, electromyography and muscle biopsy, was performed on the proband diagnosed with muscular dystrophies. Whole exome sequencing was conducted to detect the causative variants, followed by Sanger sequencing to validate these variants.
Results:
We identified two compound heterozygous variants in the DYSF gene, c.1058 T>C, p.(Leu353Pro) in exon 12 and c.1461C>A/p.Cys487* in exon 16 in this proband, which were inherited from the father and mother, respectively. In silico analysis for these variants revealed deleterious results by PolyPhen-2 (Polymorphism Phenotyping v2; http://genetics.bwh.harvard.edu/pph2), SIFT (Sorting Intolerant From Tolerant; https://sift.bii.a-star.edu.sg), PROVEAN (Protein Variation Effect Analyzer; http://provean.jcvi.org/seq_submit.php) and MutationTaster (http://www.mutationtaster.org). In addition, the two compound heterozygous variants in the proband were absent in 100 control individuals who had an identical ethnic origin and were from the same region, suggesting that these variants may be the pathogenic variants responsible for the LGMD2B phenotypes for this proband.
Conclusions:
The present study broadens our understanding of the mutational spectrum of the DYSF gene, which provides a deep insight into the pathogenesis of LGMDs and accelerates the development of a prenatal diagnosis.
Insights
Researchers identified two novel compound heterozygous variants in the dysferlin (DYSF) gene in a Chinese patient with limb-girdle muscular dystrophy type 2B (LGMD2B). This finding expands the known DYSF mutational spectrum and aids in understanding LGMD2B pathogenesis.
Area of Science:
- Genetics
- Molecular Biology
- Neurology
Background:
- The dysferlin gene (DYSF) is crucial for muscle membrane repair.
- Mutations in DYSF cause limb-girdle muscular dystrophy type 2B (LGMD2B), a progressive muscle-weakening disorder.
- Understanding DYSF variants is key to diagnosing and treating LGMD2B.
Observation:
- Clinical examinations and whole exome sequencing were performed on a Chinese LGMD patient.
- Two compound heterozygous variants (c.1058 T>C and c.1461C>A) were identified in the DYSF gene.
- In silico analyses predicted these variants to be deleterious.
Findings:
- The identified DYSF variants were absent in 100 healthy controls.
- The proband inherited one variant from each parent.
- These variants are strongly associated with the patient's LGMD2B phenotype.
Implications:
- This research expands the known DYSF mutational spectrum for LGMD2B.
- Understanding these variants offers insights into LGMD2B pathogenesis.
- The findings may contribute to the development of prenatal diagnostic tools for LGMDs.
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