We identified two unstable variants in the third exon of alpha-globin genes: Hb Bernalda/Groene Hart (HBA1:c.358C>T), and Hb Caserta (HBA2:c.79G>A) in cis to Hb Sun Prairie (HBA2:c.391G>C), also named Hb Southern Italy. These mutations occurred in the H helix of the alpha-globin that is involved in heme contacting, specific recognition of alpha-hemoglobin-stabilizing protein (AHSP), and alpha1 beta1 interactions. The carriers showed alpha-thalassemia phenotype, but one also jaundice and cholelithiasis. Molecular identification of clusters of families in Southern Italy encouraged molecular characterization of mRNA, globin chain analyses, molecular modeling studies, and comparison with globin variants to understand the mechanisms causing the alpha-thalassemia phenotype. A normal amount of Hb Bernalda/Groene Hart mRNA were found, and molecular modeling highlighted additional H bonds with AHSP. For Hb Southern Italy, showing an unexpected alpha/beta biosynthetic ratio typical of the alpha-thalassemia type, two different molecular mechanisms were shown: Reduction of the variant mRNA, likely due to the No-Go Decay for the presence of unused triplet ACG at cod 26, and protein instability due to the impairment of AHSP interaction. The UDP glucuronosyltransferase 1A (UGT1A1) genotyping was conclusive in the case of jaundice and cholelithiasis. Multiple approaches are needed to properly identify the mechanisms leading to unstable variants and the effect of a mutation.

Effect of mutations on mRNA and globin stability: The cases of Hb Bernalda/Groene hart and Hb Southern Italy

Cardiero Giovanna;Musollino Gennaro;Manco Giuseppe;Lacerra Giuseppina
2020

Abstract

We identified two unstable variants in the third exon of alpha-globin genes: Hb Bernalda/Groene Hart (HBA1:c.358C>T), and Hb Caserta (HBA2:c.79G>A) in cis to Hb Sun Prairie (HBA2:c.391G>C), also named Hb Southern Italy. These mutations occurred in the H helix of the alpha-globin that is involved in heme contacting, specific recognition of alpha-hemoglobin-stabilizing protein (AHSP), and alpha1 beta1 interactions. The carriers showed alpha-thalassemia phenotype, but one also jaundice and cholelithiasis. Molecular identification of clusters of families in Southern Italy encouraged molecular characterization of mRNA, globin chain analyses, molecular modeling studies, and comparison with globin variants to understand the mechanisms causing the alpha-thalassemia phenotype. A normal amount of Hb Bernalda/Groene Hart mRNA were found, and molecular modeling highlighted additional H bonds with AHSP. For Hb Southern Italy, showing an unexpected alpha/beta biosynthetic ratio typical of the alpha-thalassemia type, two different molecular mechanisms were shown: Reduction of the variant mRNA, likely due to the No-Go Decay for the presence of unused triplet ACG at cod 26, and protein instability due to the impairment of AHSP interaction. The UDP glucuronosyltransferase 1A (UGT1A1) genotyping was conclusive in the case of jaundice and cholelithiasis. Multiple approaches are needed to properly identify the mechanisms leading to unstable variants and the effect of a mutation.
2020
Istituto di genetica e biofisica "Adriano Buzzati Traverso"- IGB - Sede Napoli
Istituto di Biochimica e Biologia Cellulare - IBBC
Molecular chaperone AHSP
Molecular modeling
MRNA quality control
No-go decay
UGT1A1
Unstable ?-Hb variants
alpha-thalassemia
Human alpha-hemoglobin
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Descrizione: Effect of mutations on mRNA and globin stability: The cases of Hb bernalda/groene hart and Hb southern italy
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/382524
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