面筋
免疫原性
蛋白质水解
免疫系统
表位
疾病
生物
肽
化学
计算生物学
免疫学
生物化学
作者
Brad A Palanski,Nielson Weng,Lichao Zhang,Andrew J Hilmer,Lalla A Fall,Kavya Swaminathan,Bana Jabri,Carolina Sousa,Nielsen Q Fernandez-Becker,Chaitan Khosla,Joshua E. Elias
标识
DOI:10.1038/s41467-022-28353-1
摘要
Abstract Celiac disease (CeD) is an autoimmune disorder induced by consuming gluten proteins from wheat, barley, and rye. Glutens resist gastrointestinal proteolysis, resulting in peptides that elicit inflammation in patients with CeD. Despite well-established connections between glutens and CeD, chemically defined, bioavailable peptides produced from dietary proteins have never been identified from humans in an unbiased manner. This is largely attributable to technical challenges, impeding our knowledge of potentially diverse peptide species that encounter the immune system. Here, we develop a liquid chromatographic-mass spectrometric workflow for untargeted sequence analysis of the urinary peptidome. We detect over 600 distinct dietary peptides, of which ~35% have a CeD-relevant T cell epitope and ~5% are known to stimulate innate immune responses. Remarkably, gluten peptides from patients with CeD qualitatively and quantitatively differ from controls. Our results provide a new foundation for understanding gluten immunogenicity, improving CeD management, and characterizing the dietary and urinary peptidomes.
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