Molecular and Structural Characterization of Five Novel GLA Gene Variants in Fabry Disease

Fabry disease is an X-linked lysosomal storage disorder caused by pathogenic variants in the GLA gene, encoding α-galactosidase A. Enzyme deficiency leads to progressive globotriaosylceramide (Gb3) accumulation and multisystemic involvement. Here, we characterize five previously undescribed GLA variants (p.D109N, p.N215T, p.N192H, p.L166P, and p.F248S) through an integrated approach combining biomolecular and computational analyses to investigate their effects on enzyme structure, catalytic activity, and dimerization. The identified substitutions affect residues located in regions critical for protein folding and active-site integrity. The p.F248S variant may destabilize the hydrophobic core and reduce thermodynamic stability, whereas p.D109N and p.N192H may disrupt hydrogen-bond networks required for proper catalytic geometry. The p.N215T substitution is associated with impaired glycosylation, while p.L166P may induce local conformational changes that compromise correct folding. Biochemical analyses of all samples carrying these variants revealed reduced α-galactosidase A activity and increased the Gb3 levels, but also of uncertain significance (VUS). Overall, these findings support an effect of the five variants on α-galactosidase A structure and function and highlight the value of integrating clinical, genetic, biochemical, and computational data for variant interpretation. Molecular characterization of novel variants may improve genetic diagnosis, inform therapeutic decisions, and support the development of targeted treatment strategies in Fabry disease.

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Publication Details

Journal
International Journal of Molecular Sciences
Published
2026-09-28
DOI
https://doi.org/10.3390/ijms27198669
Primary Topic
Lysosomal Storage Disorders Research
Type
article
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article

Molecular and Structural Characterization of Five Novel GLA Gene Variants in Fabry Disease

Emanuela Maria Marsana, Francesca Cappelletti, Laura Econimo, Veronica Pagliardini et al.
International Journal of Molecular Sciences
Lysosomal Storage Disorders Research
article

Molecular and Structural Characterization of Five Novel GLA Gene Variants in Fabry Disease

Emanuela Maria Marsana, Francesca Cappelletti, Laura Econimo, Veronica Pagliardini, Michelangelo Mancuso, Paolo Colomba, Giovanni Duro, Marco Spada, Irene Giacalone, Marta Moschetti, Martina Vinci, Giulia Duro, Monia Anania, Carmelo Tonelli
article en

Abstract

Fabry disease is an X-linked lysosomal storage disorder caused by pathogenic variants in the GLA gene, encoding α-galactosidase A. Enzyme deficiency leads to progressive globotriaosylceramide (Gb3) accumulation and multisystemic involvement. Here, we characterize five previously undescribed GLA variants (p.D109N, p.N215T, p.N192H, p.L166P, and p.F248S) through an integrated approach combining biomolecular and computational analyses to investigate their effects on enzyme structure, catalytic activity, and dimerization. The identified substitutions affect residues located in regions critical for protein folding and active-site integrity. The p.F248S variant may destabilize the hydrophobic core and reduce thermodynamic stability, whereas p.D109N and p.N192H may disrupt hydrogen-bond networks required for proper catalytic geometry. The p.N215T substitution is associated with impaired glycosylation, while p.L166P may induce local conformational changes that compromise correct folding. Biochemical analyses of all samples carrying these variants revealed reduced α-galactosidase A activity and increased the Gb3 levels, but also of uncertain significance (VUS). Overall, these findings support an effect of the five variants on α-galactosidase A structure and function and highlight the value of integrating clinical, genetic, biochemical, and computational data for variant interpretation. Molecular characterization of novel variants may improve genetic diagnosis, inform therapeutic decisions, and support the development of targeted treatment strategies in Fabry disease.

International Journal of Molecular SciencesVol. 27(19)
University of Siena (IT), University of Pisa (IT), University of Trieste (IT), Ospedale di Cattinara (IT), Ospedale Santa Maria alle Scotte (IT), Azienda Ospedaliero-Universitaria di Modena (IT), Institute for Biomedical Research and Innovation (IT), National Research Council (IT), Azienda Ospedaliero Universitaria Policlinico "G.Rodolico - San Marco" (IT), Ospedale Civile di Vittorio Veneto (IT), University of Turin (IT), University of Brescia (IT)
Openalex Percentile: Top 12%
Lysosomal Storage Disorders Research
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