Towards A Novel Multi-Epitopes Chimeric Vaccine for Simulating Strong Immune Responses and Protection against Morganella morganii

Author:

Ullah Asad,Ahmad Sajjad,Ismail SabaORCID,Afsheen Zobia,Khurram MuhammadORCID,Tahir ul Qamar MuhammadORCID,AlSuhaymi Naif,Alsugoor Mahdi H.,Allemailem Khaled S.ORCID

Abstract

Morganella morganii is one of the main etiological agents of hospital-acquired infections and no licensed vaccine is available against the pathogen. Herein, we designed a multi-epitope-based vaccine against M. morganii. Predicted proteins from fully sequenced genomes of the pathogen were subjected to a core sequences analysis, followed by the prioritization of non-redundant, host non-homologous and extracellular, outer membrane and periplasmic membrane virulent proteins as vaccine targets. Five proteins (TonB-dependent siderophore receptor, serralysin family metalloprotease, type 1 fimbrial protein, flagellar hook protein (FlgE), and pilus periplasmic chaperone) were shortlisted for the epitope prediction. The predicted epitopes were checked for antigenicity, toxicity, solubility, and binding affinity with the DRB*0101 allele. The selected epitopes were linked with each other through GPGPG linkers and were joined with the cholera toxin B subunit (CTBS) to boost immune responses. The tertiary structure of the vaccine was modeled and blindly docked with MHC-I, MHC-II, and Toll-like receptors 4 (TLR4). Molecular dynamic simulations of 250 nanoseconds affirmed that the designed vaccine showed stable conformation with the receptors. Further, intermolecular binding free energies demonstrated the domination of both the van der Waals and electrostatic energies. Overall, the results of the current study might help experimentalists to develop a novel vaccine against M. morganii.

Publisher

MDPI AG

Subject

Health, Toxicology and Mutagenesis,Public Health, Environmental and Occupational Health

Reference95 articles.

1. Antibiotic Resistance: Modelling the Impact on Mortality and Morbidity;Edwards,2019

2. Global contributors to antibiotic resistance

3. The antibiotic resistance crisis: Part 2: Management strategies and new agents;Ventola;Pharm. Ther.,2015

4. The antibiotic resistance crisis: Part 1: Causes and threats;Ventola;Pharm. Ther.,2015

5. Vaccine Evolution and Its Application to Fight Modern Threats

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