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Partial d-amino acid substitution: Improved enzymatic stability and preserved Ab recognition of a MUC2 epitope peptide

机译:d-氨基酸部分取代:提高了酶的稳定性并保留了MUC2表位肽的Ab识别

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摘要

The stability of an immunogen against enzymatic degradation is considered an important factor for the design of synthetic vaccines. For our studies, we have selected an epitope from the tandem-repeat unit of the high-molecular-weight MUC2 mucin glycoprotein, which can be underglycosylated in case of colon cancer. In this study, we prepared a MUC2 peptide containing the PTGTQ epitope of a MUC2 protein backbone-specific mAb 996 and its derivatives. In these peptides, the N- and C-terminal flanking regions were systematically substituted by up to three d-amino acids. Peptides prepared by solid-phase synthesis were tested for their mAb 996 binding in competitive ELISA experiments, and their stability was studied in serum and lysosomal preparation. Our data show that the epitope function of peptide 15TPTPTGTQTPT25 is retained even in the presence of two d-amino acid residues at its N-terminal flanking region and up to three at its C-terminal flanking region (tpTPTGTQtpt). Also, this partly d peptide shows high resistance against proteolytic degradation in diluted human serum and in lysosomal preparation. These findings suggest that, by appropriate combination of structural modifications (namely, d-amino acid substitution) in the flanks of an Ab epitope, it is feasible to construct a synthetic antigen with preserved recognition properties and high stability against enzymatic degradation. Peptides tPTPTGTQTpt and tpTPTGTQTpt derived from this study can be used for immunization experiments and as potential components of synthetic vaccines for tumor therapy.
机译:免疫原抵抗酶促降解的稳定性被认为是设计合成疫苗的重要因素。在我们的研究中,我们从高分子量MUC2粘蛋白糖蛋白的串联重复单元中选择了一个表位,如果发生结肠癌,该表位可能糖基化不足。在这项研究中,我们制备了一个MUC2肽,其中包含MUC2蛋白骨架特异性mAb 996及其衍生物的PTGTQ表位。在这些肽中,N-和C-末端的侧翼区域被多达三个d-氨基酸系统地取代。在竞争性ELISA实验中测试了固相合成制备的肽与mAb 996的结合,并在血清和溶酶体制备中研究了其稳定性。我们的数据表明,即使在其N端侧翼区域存在两个d-氨基酸残基且多达三个,仍保留了肽 15 TPTPTGTQTPT 25 的表位功能在其C端侧翼区域(tpTPTGTQtpt)。同样,该部分d肽在稀释的人血清和溶酶体制剂中显示出对蛋白水解降解的高抗性。这些发现表明,通过Ab表位的侧翼中结构修饰(即,d-氨基酸取代)的适当组合,构建具有保留的识别特性和高抗酶降解稳定性的合成抗原是可行的。源自本研究的肽tPTPTGTQTpt和tpTPTGTQTpt可用于免疫实验,并可作为用于肿瘤治疗的合成疫苗的潜在成分。

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