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肿瘤抗原 MUC1 的分子模拟物。

Molecular mimics of the tumour antigen MUC1.

机构信息

Moyne Institute for Preventive Medicine, School of Genetics and Microbiology, Trinity College, University of Dublin, Dublin, Ireland.

出版信息

PLoS One. 2012;7(11):e49728. doi: 10.1371/journal.pone.0049728. Epub 2012 Nov 14.

Abstract

A key requirement for the development of cancer immunotherapy is the identification of tumour-associated antigens that are differentially or exclusively expressed on the tumour and recognized by the host immune system. However, immune responses to such antigens are often muted or lacking due to the antigens being recognized as "self", and further complicated by the tumour environment and regulation of immune cells within. In an effort to circumvent the lack of immune responses to tumour antigens, we have devised a strategy to develop potential synthetic immunogens. The strategy, termed mirror image phage display, is based on the concept of molecular mimicry as demonstrated by the idiotype/anti-idiotype paradigm in the immune system. Here as 'proof of principle' we have selected molecular mimics of the well-characterised tumour associated antigen, the human mucin1 protein (MUC1) from two different peptide phage display libraries. The putative mimics were compared in structure and function to that of the native antigen. Our results demonstrate that several of the mimic peptides display T-cell stimulation activity in vitro when presented by matured dendritic cells. The mimic peptides and the native MUC1 antigenic epitopes can cross-stimulate T-cells. The data also indicate that sequence homology and/or chemical properties to the original epitope are not the sole determining factors for the observed immunostimulatory activity of the mimic peptides.

摘要

癌症免疫疗法的一个关键要求是鉴定在肿瘤上差异表达或特异性表达并被宿主免疫系统识别的肿瘤相关抗原。然而,由于这些抗原被识别为“自身”,因此对这些抗原的免疫反应往往受到抑制或缺乏,并且进一步受到肿瘤环境和免疫细胞的调节的复杂化。为了避免对肿瘤抗原缺乏免疫反应,我们设计了一种开发潜在合成免疫原的策略。该策略称为镜像噬菌体展示,基于免疫系统中独特型/抗独特型范例所示的分子模拟概念。在这里,作为“原理证明”,我们从两个不同的肽噬菌体展示文库中选择了经过充分表征的肿瘤相关抗原人粘蛋白 1 蛋白(MUC1)的分子模拟物。对假定的模拟物进行了结构和功能比较与天然抗原。我们的结果表明,当由成熟的树突状细胞呈递时,几种模拟肽在体外显示出 T 细胞刺激活性。模拟肽和天然 MUC1 抗原表位可以交叉刺激 T 细胞。数据还表明,与原始表位的序列同源性和/或化学性质不是观察到的模拟肽免疫刺激性活性的唯一决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8cc0/3498214/e85c67da3186/pone.0049728.g001.jpg

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