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Analysis of Tn antigenicity with a panel of new IgM and IgG1 monoclonal antibodies raised against leukemic cells

机译:使用针对白血病细胞的一系列新IgM和IgG1单克隆抗体分析Tn抗原性

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摘要

CD175 or Tn antigen is a carbohydrate moiety of N-acetylgalactosamine (GalNAc)α1-O- linked to the residue of amino acid serine or threonine in a polypeptide chain. Despite the chemical simplicity of the Tn antigen, its antigenic structure is considered to be complex and the clear determinants of Tn antigenicity remain poorly understood. As a consequence, a broad variety of anti-Tn monoclonal antibodies (mAbs) have been generated. To further investigate the nature and complexity of the Tn antigen, we generated seven different anti-Tn mAbs of IgM and IgG classes raised against human Jurkat T cells, which are Tn-positive due to the low activity of T-synthase and mutation in specific chaperone Cosmc. The binding analysis of anti-Tn mAbs with the array of synthetic saccharides, glycopeptides and O-glycoproteins revealed unexpected differences in specificities of anti-Tn mAbs. IgM mAbs bound the terminal GalNAc residue of the Tn antigen irrespective of the peptide context or with low selectivity to the glycoproteins. In contrast, IgG mAbs recognized the Tn antigen in the context of a specific peptide motif. Particularly, JA3 mAb reacted to the GSPP or GSPAPP, and JA5 mAb recognized specifically the GSP motif (glycosylation sites are underlined). The major O-glycan carrier proteins CD43 and CD162 and isoforms of CD45 expressed on Jurkat cells were precipitated by anti-Tn mAbs with different affinities. In summary, our data suggest that Tn antigen–Ab binding capacity is determined by the peptide context of the Tn antigen, antigenic specificity of the Ab and class of the immunoglobulin. The newly generated anti-Tn IgG mAbs with the strong specificity to glycoprotein CD43 can be particularly interesting for the application in leukemia diagnostics and therapy.
机译:CD175或Tn抗原是N-乙酰半乳糖胺(GalNAc)α1-O-的碳水化合物部分,与多肽链中的氨基酸丝氨酸或苏氨酸残基相连。尽管Tn抗原在化学上简单,但其抗原结构仍被认为是复杂的,对Tn抗原性的明确决定因素仍知之甚少。结果,已经产生了各种各样的抗Tn单克隆抗体(mAb)。为了进一步研究Tn抗原的性质和复杂性,我们针对人类Jurkat T细胞产生了七种不同的IgM和IgG类抗Tn单克隆抗体,由于T合酶的活性低和特异性突变,这些Tn阳性伴侣COSMC。抗Tn mAb与一系列合成糖,糖肽和O-糖蛋白的结合分析显示,抗Tn mAb的特异性出乎意料的差异。 IgM mAb结合Tn抗原的末端GalNAc残基,而不管肽的背景如何或对糖蛋白的选择性低。相反,IgG mAb在特定肽基序的情况下识别Tn抗原。特别是,JA3 mAb与GSPP或GSPAPP反应,而JA5 mAb特异性识别GSP基序(糖基化位点带有下划线)。 Jurkat细胞上表达的主要O-聚糖载体蛋白CD43和CD162和CD45的同工型通过具有不同亲和力的抗Tn mAb沉淀。总之,我们的数据表明,Tn抗原-Ab的结合能力取决于Tn抗原的肽段,Ab的抗原特异性和免疫球蛋白的种类。对于糖蛋白CD43具有很强的特异性的新产生的抗Tn IgG mAb,对于在白血病诊断和治疗中的应用可能特别感兴趣。

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