Khrustaleva Tatyana Aleksandrovna, Khrustalev Vladislav Victorovich, Barkovsky Eugene Victorovich, Kolodkina Valentina Leonidovna, Astapov Anatoly Archipovich
Regulatory Proteins and Peptides Laboratory, Institute of Physiology of the National Academy of Sciences of Belarus, Academicheskaya 28, Minsk, Belarus.
Department of General Chemistry, Belarusian State Medical University, Dzerzinskogo 83, Minsk, Belarus.
Mol Immunol. 2015 Feb;63(2):235-44. doi: 10.1016/j.molimm.2014.07.008. Epub 2014 Jul 23.
The SF23 peptide corresponding to the receptor binding fragment of diphtheria toxin (residues 508-530) has been synthesized. This fragment forming a protruding beta hairpin has been chosen because it is the less mutable B-cell epitope. Affine chromatography and ELISA show that antibodies from the sera of persons infected by toxigenic Corynebacterium diphtheriae and those immunized by diphtheria toxoid are able to bind the synthetic SF23 peptide. There are antibodies recognizing the SF23 peptide in the serum of horses hyperimmunized with diphtheria toxoid. Analysis of circular dichroism spectra show formation of beta hairpin by the peptide. Taken together, the results showed that the structure of the less mutable epitope of C. diphtheriae toxin was reproduced by the short SF23 peptide. Since antibodies against that epitope should block its interactions with cellular receptor (heparin-binding epidermal growth factor), the SF23 peptide can be considered as a promising candidate for synthetic vaccine development. Fluorescence quenching studies showed the existence of chloride and phosphate binding sites on the SF23 molecule. Phosphate containing adjuvants (aluminum hydroxyphosphate or aluminum hydroxyphosphate sulfate) are recommended to increase the SF23 immunogenic properties.
已经合成了与白喉毒素受体结合片段(第508 - 530位氨基酸残基)相对应的SF23肽。选择形成突出β发夹结构的该片段是因为它是较不易突变的B细胞表位。亲和层析和酶联免疫吸附测定表明,来自产毒白喉棒状杆菌感染人群血清以及用白喉类毒素免疫人群血清中的抗体能够结合合成的SF23肽。在用白喉类毒素超免疫的马血清中存在识别SF23肽的抗体。圆二色光谱分析表明该肽形成了β发夹结构。综上所述,结果表明短的SF23肽再现了白喉杆菌毒素较不易突变表位的结构。由于针对该表位的抗体应能阻断其与细胞受体(肝素结合表皮生长因子)的相互作用,因此SF23肽可被视为合成疫苗开发的一个有前景的候选物。荧光猝灭研究表明SF23分子上存在氯离子和磷酸根结合位点。建议使用含磷佐剂(羟基磷酸铝或硫酸羟基磷酸铝)来增强SF23的免疫原性。