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   identification of conformational b-cell epitopes in diphtheria toxin at varying temperatures using molecular dynamics simulations  
   
نویسنده ghaderi s. ,bozorgmehr m. r. ,ahmadi m. ,tarahomjoo sh.
منبع archives of razi institute - 2020 - دوره : 75 - شماره : 4 - صفحه:427 -437
چکیده    The changes in temperature levels can potentially affect the toxins in terms of stability and immunological properties via alteration of their structures. diphtheria toxin (dt) is highly considered by scientists since its mechanism of action is similar to those of most bacterial toxins, such as botulinum, tetanus, and anthrax. the protection of conformational bcell epitopes is critically important in the process of diphtheria vaccine production. this study aimed to evaluate the conformational changes of the dt structure at three different temperature levels (27˚c, 37˚c, and 47˚c) using molecular dynamic simulations. secondary structures were analyzed in yasara software. according to the results, significant decreases were observed in percentages of the βsheets, turns, and the helices of the dt structure at 47˚c in comparison with those at 27˚c and 37˚c. furthermore, the tertiary structure of the dt was compared at different temperatures using the contact map.  accordingly, the results showed that the rootmeansquare deviation of the dt structure increased upon temperature rising. in addition, amino acids d68, g128, g171, c186, and k534s535 at 27˚c and 37˚c, as well as amino acids g26, p38, s291, t267, h384, a356, and v518 at 47˚c showed higher root mean square fluctuation values. the finding demonstrated that the stability of the dt structure decreased at high temperature (47˚c). the solventaccessible surface area diagram showed that the hydrophobicity of the dt structure increased via temperature rising, and the amino acid residues belonging to bcell epitopes extended through increasing temperature. however, bcell epitopes belonging to the junction region of chains a and b were only present at 37˚c.  the results of this study are expected to be applicable for determining a suitable temperature level for the production process of the diphtheria vaccine.
کلیدواژه b-cell epitope ,diphtheria toxin ,molecular dynamics simulation ,stability ,temperature
آدرس agricultural research, education and extension organization (areeo), razi vaccine and serum research institute, department of biotechnology, division of central laboratory, iran, islamic azad university, mashhad branch, department of chemistry, iran, agricultural research, education and extension organization (areeo), razi vaccine and serum research institute, iran, agricultural research, education and extension organization (areeo), razi vaccine and serum research institute, department of biotechnology, division of genomics and genetic engineering, iran
پست الکترونیکی s.tarahomjoo@gmail.com
 
     
   
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