Background and Aims:: Mutations in the gene DYSF encoding dysferlin are responsible fordysferlinopathies. Dysferlin is mainly expressed in cardiac and skeletal muscle and appears to play animportant role in the repair of the plasmalemma. Intra- and inter-family phenotypic variability has beenreported in the literature for mutations in the DYSF gene. A new Cys1678Tyr mutation responsible ofLGMD2B has been identified in a family from southern Italy.Methods:: Genomic DNA was extracted from peripheral blood lymphocytes of all family's affected andunaffected subjects using standard protocol. We developed a panel comprising 40 genes involved inLGMDs. The sequencing process was conducted on Ion Torrent PGM platform, annotation of variantcalling by WANNOVAR. All the variations founded were confirmed by direct resequencing ABI PRISM3130xl Genetic Analyzer.Results:: Molecular analysis of three patients from a southern Italian family allowed the identification of anew G5036A mutation in the DYSF gene responsible for LGMD 2B. This mutation determining thereplacement of a cysteine in position 1678 with a tyrosine predicted to be deleterious by PolyPhen andsilico SIFT analysis. Moreover, Swiss model pipeline analysis showed that this mutation causes thebreaking of a strong disulfide bridge with important consequences on the protein activity.Conclusions:: The identification of new mutations responsible for LGMD2B and the study of severalaffected families will contribute to the identification of additional genetic, epigenetic, environmental factorsresponsible for the intra and inter-family variability reported in the literature. Furthermore, this willdetermine the development of new therapeutic targets and personalized medicine.

A NEW CYS1678TYR MUTATION RESPONSIBLE OF LGMD2B IDENTIFIED IN A FAMILY FROM SOUTHERN ITALY

Patrizia Spadafora
;
Antonio Qualtieri;Francesca Cavalcanti;Olivier Gallo;Gemma Di Palma;Luigi Citrigno
2021

Abstract

Background and Aims:: Mutations in the gene DYSF encoding dysferlin are responsible fordysferlinopathies. Dysferlin is mainly expressed in cardiac and skeletal muscle and appears to play animportant role in the repair of the plasmalemma. Intra- and inter-family phenotypic variability has beenreported in the literature for mutations in the DYSF gene. A new Cys1678Tyr mutation responsible ofLGMD2B has been identified in a family from southern Italy.Methods:: Genomic DNA was extracted from peripheral blood lymphocytes of all family's affected andunaffected subjects using standard protocol. We developed a panel comprising 40 genes involved inLGMDs. The sequencing process was conducted on Ion Torrent PGM platform, annotation of variantcalling by WANNOVAR. All the variations founded were confirmed by direct resequencing ABI PRISM3130xl Genetic Analyzer.Results:: Molecular analysis of three patients from a southern Italian family allowed the identification of anew G5036A mutation in the DYSF gene responsible for LGMD 2B. This mutation determining thereplacement of a cysteine in position 1678 with a tyrosine predicted to be deleterious by PolyPhen andsilico SIFT analysis. Moreover, Swiss model pipeline analysis showed that this mutation causes thebreaking of a strong disulfide bridge with important consequences on the protein activity.Conclusions:: The identification of new mutations responsible for LGMD2B and the study of severalaffected families will contribute to the identification of additional genetic, epigenetic, environmental factorsresponsible for the intra and inter-family variability reported in the literature. Furthermore, this willdetermine the development of new therapeutic targets and personalized medicine.
2021
Istituto per la Ricerca e l'Innovazione Biomedica -IRIB
LGMD2B
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/448541
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