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首页> 外文期刊>Journal of mass spectrometry: JMS >Mass spectrometric and peptide chip characterization of an assembled epitope: analysis of a polyclonal antibody model serum directed against the Sj?gren/systemic lupus erythematosus autoantigen TRIM21~?
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Mass spectrometric and peptide chip characterization of an assembled epitope: analysis of a polyclonal antibody model serum directed against the Sj?gren/systemic lupus erythematosus autoantigen TRIM21~?

机译:组装表位的质谱和肽芯片表征:针对Sjgren /系统性红斑狼疮自身抗原TRIM21〜的多克隆抗体模型血清的分析

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摘要

We demonstrate the development of a mass spectrometry-based epitope-mapping procedure in combination with Western blot analysis that works also with antigens that are insoluble in nondenaturing buffers consuming minute amounts of antigen (approximately 200 pmol) and antibody (approximately 15 pmol), respectively. A polyclonal anti-TRIM21 rabbit antibody serum is applied as a model serum for future patient analyses to set up the system. The major epitope that is recognized by the anti-TRIM21 serum spans the central TRIM21 region LQ-ELEKDEREQLRILGE-KE, showing that immunization with a 139-amino acid residue long peptide resulted in a 'monospecific' polyclonal antibody repertoire. Protein structure investigations, secondary structure predictions, and surface area calculations revealed that the best matching partial sequence to fulfill all primary and secondary structure requirements was the four amino acid spanning motif 'L-E-Q-L', which is present in both the sequential and the α-helical peptide conformation. Peptide chip analyses confirmed the mass spectrometric results and showed that the peptide chip platform is an appropriate method for displaying secondary structure-relying epitope conformations. As the same secondary structures are present in vivo, patient antibody screening, e.g., to identify subgroups of patients according to distinct epitope antibody reactivities, is feasible.
机译:我们证明了基于质谱的表位定位程序与Western印迹分析相结合的发展,该程序也可与不溶于消耗抗原(约200 pmol)和抗体(约15 pmol)的非变性缓冲液的抗原分离的抗原。将多克隆抗TRIM21兔抗体血清用作模型血清,以供将来进行患者分析以建立系统。抗TRIM21血清识别的主要表位跨越了TRIM21中央区域LQ-ELEKDEREQLRILGE-KE,这表明用139个氨基酸残基的长肽进行免疫可产生“单特异性”多克隆抗体库。蛋白质结构研究,二级结构预测和表面积计算表明,满足所有一级结构和二级结构要求的最佳匹配部分序列是四个氨基酸跨越基序“ LEQ-L”,该基序同时存在于序列和α中-螺旋肽构象。肽芯片分析证实了质谱结果,并表明肽芯片平台是显示依赖二级结构的表位构象的合适方法。由于体内存在相同的二级结构,因此可以进行患者抗体筛选,例如根据不同的表位抗体反应性鉴定患者亚组。

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