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Requirement for endocytic antigen processing and influence of invariant chain and H-2M deficiencies in CNS autoimmunity

机译:内吞抗原加工的要求以及中枢神经系统自身免疫中恒定链和H-2M缺陷的影响

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摘要

The role of processing in antigen (Ag) presentation and T cell activation in experimental allergic encephalomyelitis (EAE) was evaluated in wild-type mice, mice that selectively express either Ii p31 or p41, and mice completely deficient in Ii or H-2M. We demonstrate that processing of myelin oligodendrocyte glycoprotein (MOG) is required for presentation of the dominant encephalitogenic MOG epitope, p35-55. Ii p31- and p41-expressing mice developed EAE with similar incidence to wild-type mice, although p41 mice had a more severe course. Ag-presenting cells (APCs) from Ii- or H-2M–deficient mice could present p35-55, but not MOG, demonstrating that these APCs could not process native MOG. Ii- and H-2M–deficient mice were not susceptible to EAE by immunization with p35-55 or MOG or by adoptive transfer of encephalitogenic T cells. However, CD4+ T cells from p35-55–immunized H-2M–deficient mice proliferated, secreted IFN-γ, and transferred EAE to wild-type, but not H-2M–deficient, mice. Thus, EAE resistance in H-2M–deficient mice is not due to an inability of APCs to present p35-55, or an intrinsic defect in the encephalitogenic T cell repertoire, but reflects a defect in APC function. Our results indicate that processing is required for initial Ag presentation and CNS T cell activation and suggest that autopathogenic peptides of CNS autoantigen may not be readily available for presentation without processing.
机译:在野生型小鼠,选择性表达Ii p31或p41的小鼠以及完全缺乏Ii或H-2M的小鼠中,评估了实验性变应性脑脊髓炎(EAE)中抗原(Ag)呈递和T细胞活化过程中的作用。我们证明,髓鞘少突胶质细胞糖蛋白(MOG)的处理是占主导地位的脑源性MOG表位,p35-55的呈现所必需的。虽然表达p31和p41的小鼠病程更严重,但其表达出的EAE与野生型小鼠的发病率相似。来自Ii或H-2M缺陷小鼠的Ag呈递细胞(APC)可以呈递p35-55,但不能呈递MOG,表明这些APC不能处理天然MOG。通过p35-55或MOG免疫或过继性致脑病T细胞免疫,IIi和H-2M缺陷小鼠对EAE不敏感。但是,来自经p35-55免疫的H-2M缺陷型小鼠的CD4 + T细胞增殖,分泌IFN-γ,并将EAE转移至野生型而非H-2M缺陷型小鼠。因此,H-2M缺陷型小鼠的EAE抗性不是由于APC无法呈现p35-55或致脑性T细胞库中的固有缺陷,而是反映了APC功能的缺陷。我们的结果表明,最初的Ag呈递和CNS T细胞活化需要进行加工,并且表明CNS自身抗原的自身致病性肽如果不经过加工就可能不容易呈递。

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