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Distinct antigenic features of linear epitopes at the N-terminus and C-terminus of 65 kDa glutamic acid decarboxylase (GAD65): implications for autoantigen modification during pathogenesis

机译:线性表位在65 kDa谷氨酸脱羧酶(GAD65)N端和C端的独特抗原特性:对发病过程中自身抗原修饰的影响

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摘要

Autoantibodies to 65 kDa glutamic acid decarboxylase (GAD65) are produced in many patients with autoimmune polyendocrine syndrome type II (APS-II) or stiff-man syndrome (SMS) and are heterogeneous in their epitope specificities, recognizing both conformational and linear determinants. Major linear epitopes of GAD, which are recognized by autoantibodies in a minority of these patients, occur in the N-terminal and C-terminal regions. We have investigated antibody recognition of the N- and C-termini of GAD65 in relation to their structural features as an approach to understanding what modifications to the native GAD structure may occur that facilitate the generation of antibodies specific to linear epitopes in these regions during the autoimmune pathogenesis. A monoclonal antibody specific to the N-terminus of GAD65 bound both native and denatured GAD in ELISA, whereas monoclonal and polyclonal antibodies specific to the C-terminus of GAD bound only denatured GAD. These antibodies were epitope mapped using random peptide phage-display libraries and the epitopes related to a previously proposed structural model of GAD65. This has led us to propose that the α-helical secondary structure of the C-terminus of GAD65 must be denatured to generate linear epitopes. In contrast, the N-terminus is both surface exposed and linear in the native structure, but may be masked by membrane interactions, which must be broken to facilitate recognition by B cells.
机译:65 kDa谷氨酸脱羧酶(GAD65)的自身抗体在许多患有自身免疫性II型内分泌综合症(APS-II)或僵尸综合症(SMS)的患者中产生,并且它们的表位特异性不同,可以识别构象和线性决定簇。 GAD的主要线性表位在少数患者中被自身抗体识别,出现在N端和C端区域。我们已经研究了GAD65的N和C末端与结构特征相关的抗体识别方法,以了解可能会对天然GAD结构进行哪些修饰,从而在抗体合成过程中促进这些区域中线性表位特异性抗体的产生。自身免疫性发病机制。在ELISA中,对GAD65 N端特异的单克隆抗体结合天然GAD和变性GAD,而对GAD C端特异的单克隆抗体和多克隆抗体仅结合变性GAD。使用随机肽噬菌体展示文库将这些抗体定位在抗原决定簇上,这些抗原决定簇与先前建议的GAD65结构模型有关。因此,我们提出必须变性GAD65 C端的α螺旋二级结构以产生线性表位。相反,N末端在天然结构中既是表面暴露的,又是线性的,但可能被膜相互作用掩盖,必须将其破坏才能促进B细胞识别。

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