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首页> 外文期刊>Biopolymers: Original Research on Biomolecules and Biomolecular Assemblies >Synthesis of MUC1 glycopeptide thioesters and ligation via direct aminolysis.
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Synthesis of MUC1 glycopeptide thioesters and ligation via direct aminolysis.

机译:MUC1糖肽硫酯的合成和通过直接氨解的连接。

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MUC1 is a cell-surface, epithelial glycoprotein that forms an essential protective barrier of cells and serves to modulate intercellular communication. During cancer progression, the dysregulation of glycosyltransferases, which serve to elongate cell-surface glycans, leads to aberrant gIycosylation patterns on this glycoprotein. This results in the presentation of well-characterized, tumor-associated carbohydrate antigens (TACAs) which represent important biomarkers for a range of epithelial cancers. The synthesis of well-defined, multivalent MUC1 glycopeptide constructs bearing TACAs therefore represents a viable opportunity for the development of cancer vaccine candidates. We report herein the synthesis of a glycopeptide thioester, comprising the full eicosapeptide variable number tandem repeat (VNTR) region of MUC1, which was prepared bearing multiple copies of the cancer-associated TN antigen. The glycopeptide thioester was prepared on the solid-phase using two different methods on 2-chlorotrityl chloride and sulfamylbutyryl resins. The solid-phase assembly on 2-chlorotrityl chloride resin, followed by thioesterification in solution, afforded the desired thioester in 4% yield over 41 linear steps. Likewise, the glycopeptide thioester was successfully prepared on sulfamylbutyryl resin using an activation and thiol-release strategy in a 9% isolated yield. The resulting peptide thioester was successfully ligated to a deprotected MUC1 glycopeptide using the direct aminolysis ligation to afford a 5.8 kDa, 40 amino acid MUC1 glycopeptide bearing 10 copies of the T(N) antigen. This work represents an important step toward the immunological evaluation of multivalent MUC1 constructs.
机译:MUC1是一种细胞表面的上皮糖蛋白,可形成细胞的基本保护屏障,并调节细胞间的通讯。在癌症进展过程中,糖基转移酶的失调可延长细胞表面的聚糖,导致该糖蛋白的糖基化模式异常。这导致了表征良好的,与肿瘤相关的碳水化合物抗原(TACA)的呈现,其代表了一系列上皮癌的重要生物标志物。因此,带有TACA的定义明确的多价MUC1糖肽构建体的合成代表了开发癌症疫苗候选物的可行机会。我们在这里报告了糖肽硫酯的合成,其中包含完整的MUC1的二十碳肽可变数串联重复序列(VNTR)区域,该区域经制备可携带多个与癌症相关的TN抗原。使用两种不同的方法在2-氯三苯甲基氯和氨磺酰基丁酰基树脂上固相制备糖肽硫酯。在2-氯三苯甲基氯树脂上进行固相组装,然后在溶液中进行硫酯化,在41个线性步骤中以4%的收率提供了所需的硫酯。同样,使用活化和巯基释放策略,在磺酰胺基丁酰基树脂上成功制备了糖肽硫酯,分离产率为9%。使用直接的氨解连接,将所得的肽硫酯成功地连接到脱保护的MUC1糖肽上,得到5.8 kDa,40个氨基酸的MUC1糖肽,带有10个拷贝的T(N)抗原。这项工作代表了对多价MUC1构建体进行免疫学评估的重要一步。

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