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Pathogenic G6PD variants: Different clinical pictures arise from different missense mutations in the same codon

Authors :
Costa, Simonetta
Minucci, Angelo
Kumawat, A.
Debonis, M.
Prontera, G.
Gelsomino, M.
Tana, Milena
Tiberi, Eloisa
Romano, A.
Ruggiero, Antonio
Mastrangelo, Stefano
Palumbo, Giulia
Giorgio, Valentina
Onori, Maria Elisabetta
Bolognesi, M.
Camilloni, C.
Luzzatto, L.
Vento, Giovanni
Costa S.
Minucci A.
Tana M.
Tiberi E.
Ruggiero A. (ORCID:0000-0002-6052-3511)
Mastrangelo S. (ORCID:0000-0002-3305-6014)
Palumbo G.
Giorgio V.
Onori M. E.
Vento G. (ORCID:0000-0002-8132-5127)
Costa, Simonetta
Minucci, Angelo
Kumawat, A.
Debonis, M.
Prontera, G.
Gelsomino, M.
Tana, Milena
Tiberi, Eloisa
Romano, A.
Ruggiero, Antonio
Mastrangelo, Stefano
Palumbo, Giulia
Giorgio, Valentina
Onori, Maria Elisabetta
Bolognesi, M.
Camilloni, C.
Luzzatto, L.
Vento, Giovanni
Costa S.
Minucci A.
Tana M.
Tiberi E.
Ruggiero A. (ORCID:0000-0002-6052-3511)
Mastrangelo S. (ORCID:0000-0002-3305-6014)
Palumbo G.
Giorgio V.
Onori M. E.
Vento G. (ORCID:0000-0002-8132-5127)
Publication Year :
2024

Abstract

G6PD deficiency results from mutations in the X-linked G6PD gene. More than 200 variants are associated with enzyme deficiency: each one of them may either cause predisposition to haemolytic anaemia triggered by exogenous agents (class B variants), or may cause a chronic haemolytic disorder (class A variants). Genotype-phenotype correlations are subtle. We report a rare G6PD variant, discovered in a baby presenting with severe jaundice and haemolytic anaemia since birth: the mutation of this class A variant was found to be p.(Arg454Pro). Two variants affecting the same codon were already known: G6PD Union, p.(Arg454Cys), and G6PD Andalus, p.(Arg454His). Both these class B variants and our class A variant exhibit severe G6PD deficiency. By molecular dynamics simulations, we performed a comparative analysis of the three mutants and of the wild-type G6PD. We found that the tetrameric structure of the enzyme is not perturbed in any of the variants; instead, loss of the positively charged Arg residue causes marked variant-specific rearrangement of hydrogen bonds, and it influences interactions with the substrates G6P and NADP. These findings explain severe deficiency of enzyme activity and may account for p.(Arg454Pro) expressing a more severe clinical phenotype.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1479532961
Document Type :
Electronic Resource