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MHC Ib molecule Qa-1 presents Mycobacterium tuberculosis peptide antigens to CD8+ T cells and contributes to protection against infection

机译:MHC Ib分子Qa-1向CD8 + T细胞呈递结核分枝杆菌肽抗原并有助于预防感染

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摘要

A number of nonclassical MHC Ib molecules recognizing distinct microbial antigens have been implicated in the immune response to Mycobacterium tuberculosis (Mtb). HLA-E has been identified to present numerous Mtb peptides to CD8+ T cells, with multiple HLA-E-restricted cytotoxic T lymphocyte (CTL) and regulatory T cell lines isolated from patients with active and latent tuberculosis (TB). In other disease models, HLA-E and its mouse homolog Qa-1 can act as antigen presenting molecules as well as regulators of the immune response. However, it is unclear what precise role(s) HLA-E/Qa-1 play in the immune response to Mtb. In this study, we found that murine Qa-1 can bind and present Mtb peptide antigens to CD8+ T effector cells during aerosol Mtb infection. Further, mice lacking Qa-1 (Qa-1-/-) were more susceptible to high-dose Mtb infection compared to wild-type controls, with higher bacterial burdens and increased mortality. The increased susceptibility of Qa-1-/- mice was associated with dysregulated T cells that were more activated and produced higher levels of pro-inflammatory cytokines. T cells from Qa-1-/- mice also had increased expression of inhibitory and apoptosis-associated cell surface markers such as CD94/NKG2A, KLRG1, PD-1, Fas-L, and CTLA-4. As such, they were more prone to cell death and had decreased capacity in promoting the killing of Mtb in infected macrophages. Lastly, comparing the immune responses of Qa-1 mutant knock-in mice deficient in either Qa-1-restricted CD8+ Tregs (Qa-1 D227K) or the inhibitory Qa-1-CD94/NKG2A interaction (Qa-1 R72A) with Qa-1-/- and wild-type controls indicated that both of these Qa-1-mediated mechanisms were involved in suppression of the immune response in Mtb infection. Our findings reveal that Qa-1 participates in the immune response to Mtb infection by presenting peptide antigens as well as regulating immune responses, resulting in more effective anti-Mtb immunity.
机译:认识到独特的微生物抗原的许多非经典MHC Ib分子与结核分枝杆菌(Mtb)的免疫反应有关。已确定HLA-E可向CD8 + T细胞呈递多种Mtb肽,并具有多种HLA-E限制性细胞毒性T淋巴细胞(CTL)和调节性T细胞系,这些细胞系均来自活动性和潜伏性结核病患者(TB)。在其他疾病模型中,HLA-E及其小鼠同源物Qa-1可以充当抗原呈递分子以及免疫应答的调节剂。然而,尚不清楚HLA-E / Qa-1在对Mtb的免疫反应中起什么确切作用。在这项研究中,我们发现鼠Qa-1可以在Mtb气溶胶感染过程中将Mtb肽抗原结合并呈递给CD8 + T效应细胞。此外,与野生型对照相比,缺乏Qa-1(Qa-1 -/-)的小鼠更容易受到大剂量Mtb感染,细菌负担增加,死亡率增加。 Qa-1 -/-小鼠的易感性增加与失调的T细胞相关,后者活化性更高,并产生更高水平的促炎细胞因子。 Qa-1 -/-小鼠的T细胞也具有抑制和凋亡相关细胞表面标志物,例如CD94 / NKG2A,KLRG1,PD-1,Fas-L和CTLA-4的表达增加。 。因此,它们更倾向于细胞死亡,并且在促进感染的巨噬细胞中杀灭Mtb的能力降低。最后,比较Qa-1限制性CD8 + Tregs(Qa-1 D227K)或抑制性Qa-1-CD94 / NKG2A相互作用缺乏的Qa-1突变敲除小鼠的免疫应答(Qa-1 R72A)与Qa-1 -/-和野生型对照表明,这两个Qa-1介导的机制均参与了Mtb感染中免疫应答的抑制。我们的发现表明,Qa-1通过呈递肽抗原以及调节免疫反应来参与针对Mtb感染的免疫反应,从而产生更有效的抗Mtb免疫力。

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