hidden
Hình bìa

Evaluating the effect of SNPs located on some biofilm genes on their protein function and structure in Pseudomonas aeruginosa and Klebsiella pneumonia isolates

To evaluate the impact of biofilm-associated SNPs (previously identified) on protein structure and function, we employed a suite of bioinformatics tools. SIFT, Mupro, INPS-3D, and NCBI Conserved Domain Search were utilized to analyze changes in function, stability, secondary structure, phi/psi angles, and Relative Solvent Accessibility (RSA). Furthermore, SwissDock and molecular dynamics simulations were conducted to compare free energy, RMSF, polarity, flexibility, and molecular contacts between wild-type and mutant proteins. In silico analysis indicated that mutations in quorum-sensing (lasI, rhlI) and biofilm-associated genes significantly impact bacterial biofilm formation. Specifically, SIFT and Mupro predicted that lasI/rhlI mutations D39N (0.01/0.2) and D44N (0.5) impair signaling molecule synthesis. Furthermore, the S32N substitution in ndvB was predicted by INPS-3D to alter secondary structure (β-sheet to coil) and torsion angles (ϕ: −99 to 118; ψ: −94 to 5), likely disrupting protein function. Additionally, the R292A mutation in tssc1 was predicted to impact protein stability (SIFT: 0.01; Mupro: −0.9) and increase burial (RSA 37% to 23%, helix to coil). A frame-shift mutation in tssc1 was also identified, suggesting further modulation of biofilm production. Regarding with docking results, D44N in the rhII gene showed a slight change ΔΔG values from −7 to −7.2 and a change in polarity from 16 to 14, however, molecular dynamic simulation showed significant increase in RSMF value from 1.5 to 3.5 and increase the flexibility in mutant compared with wild type which reflects the importance of this SNP in changing the function of the protein mediating biofilm formation.

Loại tài liệu:
Article - Bài báo
Tác giả:
Khamaael Mohammed Fayyadh
Đề mục:
Journal of Genetic Engineering and Biotechnology
Nhà xuất bản:
Elsevier
Ngày xuất bản:
September 2026
Số trang/ tờ:
9
Định dạng:
pdf
Định danh tư liệu:
DOI: https://doi.org/10.1016/j.jgeb.2026.100751 | ISSN 1687-157X
Nguồn gốc:
Journal of Genetic Engineering and Biotechnology, Volume 24, Issue 3, September 2026, 100751
Lượt xem: 0
Loại file Tập tin đính kèm Dung lượng Chi tiết
2026N3JGEB100751.pdf 3061711 Kb XemTải