Darrah Erika, Kim AeRyon, Zhang Xi, Boronina Tatiana, Cole Robert N, Fava Andrea, Giles Jon T, Bingham III Clifton O, Chalmers Michael J, Griffin Patrick R, Sadegh-Nasseri Scheherazade, Rosen Antony
Division of Rheumatology, Johns Hopkins University School of Medicine , Baltimore, Maryland 21224, United States.
Department of Pathology, Johns Hopkins University School of Medicine , Baltimore Maryland 21205, United States.
J Proteome Res. 2017 Jan 6;16(1):355-365. doi: 10.1021/acs.jproteome.6b00617. Epub 2016 Oct 20.
Proteolysis of autoantigens can alter normal MHC class II antigen processing and has been implicated in the induction of autoimmune diseases. Many autoantigens are substrates for the protease granzyme B (GrB), but the mechanistic significance of this association is unknown. Peptidylarginine deiminase 4 (PAD4) is a frequent target of autoantibodies in patients with rheumatoid arthritis (RA) and a substrate for GrB. RA is strongly associated with specific MHC class II alleles, and elevated levels of GrB and PAD4 are found in the joints of RA patients, suggesting that GrB may alter the presentation of PAD4 by RA-associated class II alleles. In this study, complementary proteomic and immunologic approaches were utilized to define the effects of GrB cleavage on the structure, processing, and immunogenicity of PAD4. Hydrogen-deuterium exchange and a cell-free MHC class II antigen processing system revealed that proteolysis of PAD4 by GrB induced discrete structural changes in PAD4 that promoted enhanced presentation of several immunogenic peptides capable of stimulating PAD4-specific CD4+ T cells from patients with RA. This work demonstrates the existence of PAD4-specific T cells in patients with RA and supports a mechanistic role for GrB in enhancing the presentation of autoantigenic CD4+ T cell epitopes.
自身抗原的蛋白水解可改变正常的MHC II类抗原加工过程,并与自身免疫性疾病的诱导有关。许多自身抗原是蛋白酶颗粒酶B(GrB)的底物,但这种关联的机制意义尚不清楚。肽基精氨酸脱亚氨酶4(PAD4)是类风湿性关节炎(RA)患者自身抗体的常见靶点,也是GrB的底物。RA与特定的MHC II类等位基因密切相关,在RA患者的关节中发现GrB和PAD4水平升高,这表明GrB可能会改变RA相关II类等位基因对PAD4的提呈。在本研究中,采用互补的蛋白质组学和免疫学方法来确定GrB切割对PAD4的结构、加工和免疫原性的影响。氢-氘交换和无细胞MHC II类抗原加工系统表明,GrB对PAD4的蛋白水解诱导了PAD4中离散的结构变化,促进了几种能够刺激RA患者PAD4特异性CD4+ T细胞的免疫原性肽的提呈增强。这项工作证明了RA患者中存在PAD4特异性T细胞,并支持GrB在增强自身抗原性CD4+ T细胞表位提呈中的机制作用。