Integration of immunoinformatics and cheminformatics to design and evaluate a multitope vaccine against Klebsiella pneumoniae and Pseudomonas aeruginosa coinfection

整合免疫信息学和化学信息学来设计和评估针对肺炎克雷伯菌和铜绿假单胞菌共感染的多表位疫苗

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作者:Ahmed M Gouda, Mohamed A Soltan, Khalid Abd-Elghany, Ashraf E Sileem, Hanan M Elnahas, Marwa Abdel-Monem Ateya, Mahmoud H Elbatreek, Khaled M Darwish, Hanin A Bogari, Manar O Lashkar, Mohammed M Aldurdunji, Sameh S Elhady, Tarek A Ahmad, Ahmed Mohamed Said

Methods

In the current study, the screening of several proteins from both pathogens highlighted FepA and OmpK35 for K. pneumonia in addition to HasR and OprF from P. aeruginosa as promising candidates for epitope mapping. Those four proteins were linked to form a multitope vaccine, that was formulated with a suitable adjuvant, and PADRE peptides to finalize the multitope vaccine construct. The final vaccine's physicochemical features, antigenicity, toxicity, allergenicity, and solubility were evaluated for use in humans.

Results

The output of the computational analysis revealed that the designed multitope construct has passed these assessments with satisfactory scores where, as the last stage, we performed a molecular docking study between the potential vaccine construct and K. pneumonia associated immune receptors, TLR4 and TLR2, showing affinitive to both targets with preferentiality for the TLR4 receptor protein. Validation of the docking studies has proceeded through molecular dynamics simulation, which estimated a strong binding and supported the nomination of the designed vaccine as a putative solution for K. pneumoniae and P. aeruginosa coinfection. Here, we describe the approach for the design and assessment of our potential vaccine.

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