Department of Basic Medicine Science, School of Medicine, Xiamen University, Xiamen, Fujian, China.
J Leukoc Biol. 2022 Jul;112(1):157-172. doi: 10.1002/JLB.4MA0222-419RR. Epub 2022 Mar 30.
K48-linked ubiquitination determines antigen degradation and plays vital roles in the process of cross-presentation of bone marrow precursor cell (BMPC)-derived dendritic cells (DCs). Although previous studies revealed that K48 and K27-linked ubiquitination regulates innate immunity, the exact roles of K48 and K27-linked ubiquitination in cross-presentation and BMPC-based adaptive immunity are still uncertain. In this study, we investigated the effects of K48- and K27-mutant ubiquitin (Ub) on BMPC-based adaptive immune response by observing the effects of MG132, Ub deficiency, and K48/K27-mutant Ub on cross-presentation, T cell proliferation, IFN-γ secretion, BMPC-based CTL priming, and thereby the efficiency of cytolytic capacity of BMPC-activate T cells. We demonstrated that MG132, Ub deficiency, and K48-mutant Ub impair cross-presentation, T cell proliferation, IFN-γ secretion, BMPC-based CTL priming, and the cytolytic capacity of BMPC-activated T cells. Moreover, although K27-only Ub decreases cross-presentation, the replenishment of K27-mutant Ub restores Ub deficiency impaireds the abilities of T cell proliferation, IFN-γ secretion, CTL priming, and the cytolytic capacity of BMPC-activated T cells. Thus, these data suggest that K48- and K27-linked ubiquitination contributes to BMPC-mediated adaptive immune response by affecting BMPC cross-presentation and the cytolytic capacity by up-regulating both perforin and granzyme B in BMPC-activated T cells. K48- and K27-mutant Ub might have potential clinical therapeutic function in adaptive immune response-associated diseases.
K48 连接的泛素化决定了抗原的降解,并在骨髓前体细胞 (BMPC) 衍生的树突状细胞 (DC) 的交叉呈递过程中发挥重要作用。尽管先前的研究表明 K48 和 K27 连接的泛素化调节先天免疫,但 K48 和 K27 连接的泛素化在交叉呈递和基于 BMPC 的适应性免疫中的确切作用仍不确定。在这项研究中,我们通过观察 MG132、泛素缺乏和 K48/K27 突变泛素对交叉呈递、T 细胞增殖、IFN-γ 分泌、BMPC 基于 CTL 的引发的影响,研究了 K48 和 K27 突变泛素对基于 BMPC 的适应性免疫反应的影响,从而评估了 BMPC 激活的 T 细胞的细胞溶解能力效率。我们证明了 MG132、泛素缺乏和 K48 突变泛素会损害交叉呈递、T 细胞增殖、IFN-γ 分泌、BMPC 基于 CTL 的引发以及 BMPC 激活的 T 细胞的细胞溶解能力。此外,尽管 K27 仅泛素会降低交叉呈递,但补充 K27 突变泛素可恢复泛素缺乏对 T 细胞增殖、IFN-γ 分泌、CTL 引发和 BMPC 激活的 T 细胞的细胞溶解能力的损害。因此,这些数据表明 K48 和 K27 连接的泛素化通过影响 BMPC 的交叉呈递和通过上调 BMPC 激活的 T 细胞中的穿孔素和颗粒酶 B 来调节 BMPC 激活的 T 细胞的细胞溶解能力,有助于 BMPC 介导的适应性免疫反应。K48 和 K27 突变泛素可能在与适应性免疫反应相关的疾病中具有潜在的临床治疗功能。