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Comprehensive analysis of non-synonymous missense SNPs of human galactose mutarotase (GALM) gene: an integrated computational approach.
Murthy, T P Krishna; Shukla, Rohit; Durga Prasad, N; Swetha, Praveen; Shreyas, S; Singh, Tiratha Raj; Pattabiraman, Ramya; Nair, Shishira S; Mathew, Blessy B; Kumar, K M.
Afiliación
  • Murthy TPK; Department of Biotechnology, Ramaiah Institute of Technology, Bengaluru, Karnataka, India.
  • Shukla R; Department of Biotechnology and Bioinformatics, Jaypee University of Information Technology, Solan, Himachal Pradesh, India.
  • Durga Prasad N; Department of Biotechnology, Ramaiah Institute of Technology, Bengaluru, Karnataka, India.
  • Swetha P; Department of Biotechnology, Ramaiah Institute of Technology, Bengaluru, Karnataka, India.
  • Shreyas S; Department of Biotechnology, Ramaiah Institute of Technology, Bengaluru, Karnataka, India.
  • Singh TR; Department of Biotechnology and Bioinformatics, Jaypee University of Information Technology, Solan, Himachal Pradesh, India.
  • Pattabiraman R; Department of Biotechnology, Ramaiah Institute of Technology, Bengaluru, Karnataka, India.
  • Nair SS; Department of Biotechnology, Ramaiah Institute of Technology, Bengaluru, Karnataka, India.
  • Mathew BB; Department of Biotechnology, Dayananda Sagar College of Engineering, Bengaluru, Karnataka, Inida.
  • Kumar KM; Department of Bioinformatics, School of Life Sciences, Pondicherry University, Kalapet, Puducherry, India.
J Biomol Struct Dyn ; 41(20): 11178-11192, 2023 12.
Article en En | MEDLINE | ID: mdl-36591702
ABSTRACT
Missense Non-synonymous single nucleotide polymorphisms (nsSNPs) of Galactose Mutarotase (GALM) are associated with the Novel type of Galactosemia (Galactosemia type 4) together with symptoms such as high blood galactose levels and eye cataracts. The objective of the present study was to identify deleterious nsSNPs of GALM recorded on the dbSNP database through comprehensive insilico analysis. Among the 319 missense nsSNPs reported, various insilco tools predicted R78S, R82G, A163E, P210S, Y281C, E307G and F339C as the most deleterious mutations. Structural analysis, PTM analysis and molecular dynamics simulations (MDS) were carried out to understand the effect of these mutations on the structural and physicochemical properties of the GALM protein. The residues R82G and E307G were found to be part of the binding site that resulted in decreased surface accessibility. Replacing the charged wild-type residue with a neutral mutant type affected its substrate binding. All 7 mutations were found to increase the rigidity of the protein structure, which is unfavorable during ligand binding. The mutation F339E made the protein structure more rigid than all the other mutations. Y281 is a phosphorylated site, and therefore, less significant structural changes were observed when compared to other mutations; however, it may have significant differences in the usual functioning of the protein. In summary, the structural and functional analysis of missense SNPs of GALM is important to reduce the number of potential mutations to be evaluated in vitro to understand the association with some genetic diseases.Communicated by Ramaswamy H. Sarma.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Galactosemias Límite: Humans Idioma: En Revista: J Biomol Struct Dyn Año: 2023 Tipo del documento: Article País de afiliación: India

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Galactosemias Límite: Humans Idioma: En Revista: J Biomol Struct Dyn Año: 2023 Tipo del documento: Article País de afiliación: India
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