| Literature DB >> 23901192 |
Mohamad Ali Haghighi1, Ashraf Mohabati Mobarez, Ali Hatef Salmanian, Mohamad Moazeni, Mohamad Reza Zali, Mehdi Sadeghi, Jafar Amani.
Abstract
BACKGROUNDS: Helicobacter pylori colonize the gastric mucosa of half of the world's population. Although it is classified as a definitive type I carcinogen by World Health Organization, there is no effective vaccine against this bacterium. H. pylori evade the host immune response by avoiding toll-like detection, such as detection via toll-like receptor-5 (TLR-5). Thus, a chimeric construct consisting of selected epitopes from virulence factors that is incorporated into a TLR-5 ligand (Pseudomonas flagellin) could result in more potent innate and adaptive immune responses.Entities:
Keywords: Cytotoxin-associated gene A; Helicobacter pylori; multi-epitope vaccine; neutrophil activating protein; outer inflammatory protein A
Year: 2013 PMID: 23901192 PMCID: PMC3722629 DOI: 10.4103/0971-6866.112885
Source DB: PubMed Journal: Indian J Hum Genet ISSN: 1998-362X
Figure 1Analysis of the H. pylori antigenic construct by DNAstar software (see the text for details)
Figure 2Schematic representation of the H. pylori antigenic construct consisting of flagellin type A and the H. pylori antigenic construct fragment. The lengths of the amino acid residues are listed in parentheses
Figure 3Secondary structure analysis of the flagellin type A/H. pylori antigenic construct protein helix: Blue, sheet: Red, coil: Violet
Figure 4The position of the replaced H. pylori antigenic construct and flagellin segments in models predicted by LOOPP server and visualized by Discovery Studio viewer. (a) Intact N-terminus of flagellin type A (flaA) (183 residues) attached to the complete H. pylori antigenic construct construct and only a small fragment of C-terminal flaA (1-68 out of 163 residues). (b) The incomplete H. pylori antigenic construct consisting of a partial cytotoxin-associated gene A fragment (64-122) and intact C-terminus of flaA
Figure 5Ramachandran plot for two selected flagellin type A- H. pylori antigenic construct models. The a and b models are the same as those presented in Figure 4
HAC continuous B- cell epitopes prediction in flaA-HAC chimeric protein based on physical and chemical properties by Bcepred
HAC discontinuous B-cell epitopes prediction in flaA-HAC chimeric protein by Discotope server
HAC T- cell epitopes prediction based on BALB/c histocompatibility molecules by rankpep
HAC cytotoxicity T-cell epitopes prediction based on different histocompatibility molecules by CTLpred and nHLApred
Figure 6The sequence of the flagellin type A - H. pylori antigenic construct gene was optimized by changing some factors to increase gene expression. (a) Codon adaptation index, (b) frequency of optimal codons, and (c) G+C content adjustment