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Aromatic residues in the oligonucleotide binding domain are essential to the function of the single-stranded DNA binding protein of Helicobacter pylori.
- Source :
-
Journal of bioscience and bioengineering [J Biosci Bioeng] 2025 Jan; Vol. 139 (1), pp. 7-13. Date of Electronic Publication: 2024 Oct 26. - Publication Year :
- 2025
-
Abstract
- Single-stranded DNA-binding protein (SSB) is essential to DNA replication, DNA repair, and homologous genetic recombination. Our previous study on the crystal structure of a C-terminally truncated SSB from Helicobacter pylori, HpSSBc, in complex with single-stranded DNA (ssDNA) suggests that several aromatic residues, including Phe37, Phe50, Phe56, and Trp84, were involved in ssDNA binding. To investigate the importance of these aromatic residues, the binding activity of four site-directed HpSSB mutants, including F37A HpSSB, F50A HpSSB, F56A HpSSB, and W84A HpSSB, was compared to that of wild-type HpSSB and HpSSBc by means of electrophoresis mobility shift assay (EMSA), tryptophan quenching fluorescence titration, and surface plasmon resonance (SPR). Molecular docking and molecular dynamic (MD) simulation of a F37A and a quadruple mutation model of HpSSBc support that the ssDNA-HpSSBc complex was destabilized when either one or four of the aromatic residues were mutated. The findings of this study suggest that mutation of the phenylalanine and tryptophan residues within the oligonucleotide-binding domain significantly diminished the ssDNA binding capability of HpSSB, highlighting the crucial role these aromatic residues play in the binding of ssDNA by HpSSB.<br /> (Copyright © 2024. Published by Elsevier B.V.)
- Subjects :
- Binding Sites
Molecular Dynamics Simulation
Oligonucleotides metabolism
Oligonucleotides chemistry
Oligonucleotides genetics
Mutagenesis, Site-Directed
Tryptophan metabolism
Tryptophan chemistry
Amino Acids, Aromatic metabolism
Amino Acids, Aromatic chemistry
Mutation
Protein Domains
Phenylalanine metabolism
Phenylalanine chemistry
DNA, Bacterial genetics
DNA, Bacterial metabolism
Surface Plasmon Resonance
Helicobacter pylori genetics
Helicobacter pylori metabolism
DNA, Single-Stranded metabolism
DNA, Single-Stranded chemistry
DNA, Single-Stranded genetics
Molecular Docking Simulation
DNA-Binding Proteins metabolism
DNA-Binding Proteins genetics
DNA-Binding Proteins chemistry
Bacterial Proteins metabolism
Bacterial Proteins genetics
Bacterial Proteins chemistry
Protein Binding
Subjects
Details
- Language :
- English
- ISSN :
- 1347-4421
- Volume :
- 139
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Journal of bioscience and bioengineering
- Publication Type :
- Academic Journal
- Accession number :
- 39490297
- Full Text :
- https://doi.org/10.1016/j.jbiosc.2024.09.003