Repository of Research and Investigative Information

Repository of Research and Investigative Information

Torbat Heydariyeh University of Medical Sciences

Stereochemical Trajectories of a Two-Component Regulatory System PmrA/B in a Colistin-Resistant Acinetobacter baumannii Clinical Isolate

(2021) Stereochemical Trajectories of a Two-Component Regulatory System PmrA/B in a Colistin-Resistant Acinetobacter baumannii Clinical Isolate. Iranian biomedical journal. pp. 193-201. ISSN 2008-823X (Electronic) 1028-852X (Linking)

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Official URL: http://www.ncbi.nlm.nih.gov/pubmed/33653023

Abstract

Background: There is limited information on the three-dimensional (3D) prediction and modeling of the colistin resistance-associated proteins PmrA/B TCS in Acinetobacter baumannii. We aimed to evaluate the stereochemical structure and domain characterization of phosphotransferase membrane receptor A/B (PmrA/B) in an A. baumannii isolate resistant to high-level colistin, using bioinformatics tools. Methods: The species of the isolate and its susceptibility to colistin were confirmed by PCR-sequencing and minimum inhibitory concentration assay, respectively. For 3D prediction of the PmrA/B, we used 16 template models with the highest quality (e-value <1 x 10-50). Results: Prediction of the PmrA structure revealed a monomeric non-redundant protein consisting of 28 alpha-helices and 22 beta-sheets. The PmrA DNA-binding motif displayed three antiparallel alpha-helices, followed by three beta-sheets, and was bond to the major groove of DNA by intermolecular van der Waals bonds through amino acids Lys, Asp, His, and Arg, respectively. Superimposition of the deduced PmrA 3D structure with the closely related PmrA protein model (GenBank no. WP071210493.1) revealed no distortion in conformation, due to Glu-->Lys substitution at position 218. Similarly, the PmrB protein structure displayed 24 alpha-helices and 13 beta-sheets. In our case, His251 acted as a phosphate receptor in the HisKA domain. The amino acid substitutions were mainly observed at the putative N-terminus region of the protein. Furthermore, two substitutions (Lys21-->Ser and Ser28-->Arg) in the transmembrane domain were detected. Conclusion: The DNA-binding motif of PmrA is highly conserved, though the N-terminal fragment of PmrB showed a high rate of base substitutions. This research provides valuable insights into the mechanism of colistin resistance in A. baumannii.

Item Type: Article
Keywords: Acinetobacter baumannii, Amino acid substitution, Colistin, Mutation
Page Range: pp. 193-201
Journal or Publication Title: Iranian biomedical journal
Volume: 25
Number: 3
Identification Number: https://doi.org/10.29252/ibj.25.3.157
ISSN: 2008-823X (Electronic) 1028-852X (Linking)
Depositing User: پریسا مرادی
URI: http://eprints.thums.ac.ir/id/eprint/3319

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