Dziadek Sebastian, Kunz Horst
Institut für Organische Chemie, Johannes-Gutenberg-Universität Mainz, Duesbergwerg 10-14, D-55128 Mainz, Germany.
Chem Rec. 2004;3(6):308-21. doi: 10.1002/tcr.10074.
In contrast to normal cells, the glycoprotein profile on epithelial tumor cells is distinctly altered. Due to an incomplete formation of the glycan side-chains resulting from a premature sialylation, additional peptide epitopes become accessible to the immune system in mucin-type glycoproteins on tumor cells. These tumor-associated structure alterations constitute the basis for a selective immunological attack on cancer cells. For the construction of immunostimulating antigens, glycopeptide partial structures from the mucins MUC1 and MUC4 carrying the tumor-associated sialyl-T(N), alpha2,6-sialyl-T and alpha2,3-sialyl-T antigens have been synthesized. Employing different linkers such as the allylic HYCRON or the fluoride-sensitive PTMSEL anchor, the antigenic glycopeptide structures were constructed on the solid phase utilizing pre-assembled glycosyl amino acid building blocks prepared in solution by convergent chemical or chemoenzymatic strategies. The proliferation of cytotoxic T cells has been induced applying a construct composed of a sialyl-T(N) MUC1-glycopeptide conjugated with a tetanus toxin T cell peptide epitope.
与正常细胞相比,上皮肿瘤细胞上的糖蛋白谱明显改变。由于过早的唾液酸化导致聚糖侧链形成不完全,肿瘤细胞上粘蛋白型糖蛋白中的额外肽表位变得可被免疫系统识别。这些肿瘤相关的结构改变构成了对癌细胞进行选择性免疫攻击的基础。为了构建免疫刺激抗原,已合成了来自粘蛋白MUC1和MUC4的携带肿瘤相关唾液酸-T(N)、α2,6-唾液酸-T和α2,3-唾液酸-T抗原的糖肽部分结构。利用不同的连接子,如烯丙基HYCRON或氟敏感的PTMSEL锚定基团,通过收敛化学或化学酶策略在溶液中制备预组装的糖基氨基酸构建块,在固相上构建抗原性糖肽结构。应用由与破伤风毒素T细胞肽表位缀合的唾液酸-T(N)MUC1-糖肽组成的构建体,可诱导细胞毒性T细胞的增殖。