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In Silico Analyses of All STAT3 Missense Variants Leading to Explore Divergent AD-HIES Clinical Phenotypes.
Mansouri, Mariam; El Haddoumi, Ghyzlane; Bendani, Houda; Boumajdi, Nasma; Hakmi, Mohammed; Abbou, Hanane; Bouricha, El Mehdi; Elgharbaoui, Boutaina; Kartti, Souad; El Jaoudi, Rachid; Belyamani, Lahcen; Kandoussi, Ilham; Ibrahimi, Azeddine; El Hafidi, Naima.
Afiliación
  • Mansouri M; Biotechnology lab (MedBiotech), Bioinova Research Center, Medical and Pharmacy School, Mohammed V University in Rabat, Morocco.
  • El Haddoumi G; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
  • Bendani H; Biotechnology lab (MedBiotech), Bioinova Research Center, Medical and Pharmacy School, Mohammed V University in Rabat, Morocco.
  • Boumajdi N; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
  • Hakmi M; Biotechnology lab (MedBiotech), Bioinova Research Center, Medical and Pharmacy School, Mohammed V University in Rabat, Morocco.
  • Abbou H; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
  • Bouricha EM; Biotechnology lab (MedBiotech), Bioinova Research Center, Medical and Pharmacy School, Mohammed V University in Rabat, Morocco.
  • Elgharbaoui B; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
  • Kartti S; Biotechnology lab (MedBiotech), Bioinova Research Center, Medical and Pharmacy School, Mohammed V University in Rabat, Morocco.
  • El Jaoudi R; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
  • Belyamani L; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
  • Kandoussi I; Mohammed VI University of Health Sciences (UM6SS), Casablanca, Morocco.
  • Ibrahimi A; Biotechnology lab (MedBiotech), Bioinova Research Center, Medical and Pharmacy School, Mohammed V University in Rabat, Morocco.
  • El Hafidi N; Centre Mohammed VI of Research and Innovation (CM6), Rabat, Morocco.
Evol Bioinform Online ; 19: 11769343231169374, 2023.
Article en En | MEDLINE | ID: mdl-37123531
ABSTRACT
Autosomal dominant hyper-IgE syndrome (AD-HIES) is linked to dominant negative mutations of the STAT3 protein whose molecular basis for dysfunction is unclear and presenting with a variety of clinical manifestations with only supportive treatment. To establish the relationship between the impact of STAT3 mutations in different domains and the severity of the clinical manifestations, 105 STAT3 mutations were analyzed for their impact on protein stability, flexibility, function, and binding affinity using in Silico approaches. Our results showed that 73% of the studied mutations have an impact on the physicochemical properties of the protein, altering the stability, flexibility and function to varying degrees. In particular, mutations affecting the DNA binding domain (DBD) and the Src Homology 2 (SH2) have a significant impact on the protein structure and disrupt its interaction either with DNA or other STAT3 to form a heterodomain complex, leading to severe clinical phenotypes. Collectively, this study suggests that there is a close relationship between the domain involving the mutation, the degree of variation in the properties of the protein and the degree of loss of function ranging from partial loss to complete loss, explaining the variability of clinical manifestations between mild and severe.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Evol Bioinform Online Año: 2023 Tipo del documento: Article País de afiliación: Marruecos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Evol Bioinform Online Año: 2023 Tipo del documento: Article País de afiliación: Marruecos
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