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质谱ITEM - FOUR分析揭示了人类心肌肌钙蛋白T中的编码单核苷酸多态性,这些多态性逃避了使用来自Elecsys肌钙蛋白T检测法的单克隆抗体M7和M11.7的夹心ELISA检测。

Mass Spectrometric ITEM-FOUR Analysis Reveals Coding Single-Nucleotide Polymorphisms in Human Cardiac Troponin T That Evade Detection by Sandwich ELISAs Which Use Monoclonal Antibodies M7 and M11.7 from the Elecsys Troponin T Assay.

作者信息

Kormann Kristjan, Ruß Manuela, Röwer Claudia, Koy Cornelia, Glocker Michael O

机构信息

Proteome Center Rostock University Medicine and Natural Science Faculty, University of Rostock, Schillingallee 69, 18057 Rostock, Germany.

出版信息

Int J Mol Sci. 2025 May 20;26(10):4892. doi: 10.3390/ijms26104892.

Abstract

Immunoassays for cardiac troponin, such as the Elecsys hs-TnT, have become the gold standard for myocardial infarction diagnostics. While various protein/chemical factors affecting the troponin complex and thus its diagnostic accuracy have been investigated, the role of coding single-nucleotide polymorphisms remains underexplored. To evaluate potential cSNP-induced interference with antibody binding in the Elecsys hs-TnT immunoassay, we applied ITEM-FOUR, a mass spectrometry-based method that quantifies changes in antibody binding upon amino acid substitutions in epitope peptides. Candidate cSNPs were selected from the dbSNP database and were mapped to human cardiac troponin T by molecular modeling. Consuming micromolar antibody concentrations and microliter sample volumes, two wild-type and 17 cSNP-derived variant epitope peptides-six for monoclonal antibody M7 and eleven for monoclonal antibody M11.7-were investigated to reveal the binding motifs "V-K-E-A" for M7 and "E-I-R-E" for M11.7. Loss of binding to M11.7 was observed for substitutions Q148R (rs730880232), R154W (rs483352832), and R154Q (rs745632066), whereas the E138K (rs730881100) exchange disrupted binding of M7. Except for cSNP Q148R, they are associated with cardiomyopathies, placing affected individuals at risk of both underlying heart disease and false-negative hs-TnT assay results in cases of myocardial infarction. Our results highlight the need to account for cSNP-related interferences in antibody-based diagnostics. ITEM-FOUR offers a powerful approach for tackling this challenge, fostering next-generation assay development.

摘要

用于检测心肌肌钙蛋白的免疫测定法,如罗氏电化学发光法高敏肌钙蛋白T检测,已成为心肌梗死诊断的金标准。虽然已经研究了各种影响肌钙蛋白复合物及其诊断准确性的蛋白质/化学因素,但编码单核苷酸多态性的作用仍未得到充分探索。为了评估在罗氏电化学发光法高敏肌钙蛋白T免疫测定中潜在的编码单核苷酸多态性对抗体结合的干扰,我们应用了ITEM - FOUR,这是一种基于质谱的方法,可量化表位肽中氨基酸替换后抗体结合的变化。候选编码单核苷酸多态性从dbSNP数据库中选择,并通过分子建模映射到人类心肌肌钙蛋白T上。使用微摩尔浓度的抗体和微升体积的样本,研究了两种野生型和17种编码单核苷酸多态性衍生的变体表位肽——6种针对单克隆抗体M7,11种针对单克隆抗体M11.7,以揭示M7的结合基序“V - K - E - A”和M11.7的结合基序“E - I - R - E”。观察到Q148R(rs730880232)、R154W(rs483352832)和R154Q(rs745632066)替换导致与M11.7的结合丧失,而E138K(rs730881100)替换破坏了M7的结合。除了编码单核苷酸多态性Q148R外,它们都与心肌病相关,使受影响个体在患有潜在心脏病的情况下以及在心肌梗死病例中面临hs - TnT检测结果假阴性的风险。我们的结果强调了在基于抗体的诊断中需要考虑编码单核苷酸多态性相关的干扰。ITEM - FOUR为应对这一挑战提供了一种强大的方法,促进了下一代检测方法的开发。

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