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UCP3 可相互调控 CD4+ Th17 和 Treg 细胞分化。

UCP3 reciprocally controls CD4+ Th17 and Treg cell differentiation.

机构信息

School of Biochemistry and Immunology, Trinity Biomedical Sciences Institute, Trinity College Dublin, Dublin, Ireland.

Department of Clinical Medicine, School of Medicine, Trinity College Dublin, Dublin 2, Ireland and National Children's Research Centre, Our Lady's Children's Hospital, Crumlin, Dublin, Ireland.

出版信息

PLoS One. 2020 Nov 19;15(11):e0239713. doi: 10.1371/journal.pone.0239713. eCollection 2020.

Abstract

Uncoupling proteins (UCPs) are members of the mitochondrial anion carrier superfamily that can mediate the transfer of protons into the mitochondrial matrix from the intermembrane space. We have previously reported UCP3 expression in thymocytes, mitochondria of total splenocytes and splenic lymphocytes. Here, we demonstrate that Ucp3 is expressed in peripheral naive CD4+ T cells at the mRNA level before being markedly downregulated following activation. Non-polarized, activated T cells (Th0 cells) from Ucp3-/- mice produced significantly more IL-2, had increased expression of CD25 and CD69 and were more proliferative than Ucp3+/+ Th0 cells. The altered IL-2 expression observed between T cells from Ucp3+/+ and Ucp3-/- mice may be a factor in determining differentiation into Th17 or induced regulatory (iTreg) cells. When compared to Ucp3+/+, CD4+ T cells from Ucp3-/- mice had increased FoxP3 expression under iTreg conditions. Conversely, Ucp3-/- CD4+ T cells produced a significantly lower concentration of IL-17A under Th17 cell-inducing conditions in vitro. These effects were mirrored in antigen-specific T cells from mice immunized with KLH and CT. Interestingly, the altered responses of Ucp3-/- T cells were partially reversed upon neutralisation of IL-2. Together, these data indicate that UCP3 acts to restrict the activation of naive T cells, acting as a rheostat to dampen signals following TCR and CD28 co-receptor ligation, thereby limiting early activation responses. The observation that Ucp3 ablation alters the Th17:Treg cell balance in vivo as well as in vitro suggests that UCP3 is a potential target for the treatment of Th17 cell-mediated autoimmune diseases.

摘要

解偶联蛋白(UCPs)是线粒体阴离子载体超家族的成员,可介导质子从细胞间隙空间转移到线粒体基质中。我们之前曾报道过 UCP3 在胸腺细胞、总脾细胞和脾淋巴细胞的线粒体中的表达。在这里,我们证明 Ucp3 在 mRNA 水平上在外周幼稚 CD4+T 细胞中表达,在激活后明显下调。来自 Ucp3-/- 小鼠的非极化、激活的 T 细胞(Th0 细胞)产生了明显更多的 IL-2,CD25 和 CD69 的表达增加,并且比 Ucp3+/+Th0 细胞更具增殖性。在 Ucp3+/+和 Ucp3-/-小鼠的 T 细胞之间观察到的改变的 IL-2 表达可能是决定分化为 Th17 或诱导调节性(iTreg)细胞的一个因素。与 Ucp3+/+相比,在 iTreg 条件下,来自 Ucp3-/-小鼠的 CD4+T 细胞具有更高的 FoxP3 表达。相反,在体外 Th17 细胞诱导条件下,Ucp3-/-CD4+T 细胞产生的 IL-17A 浓度明显降低。这些效应在来自用 KLH 和 CT 免疫的小鼠的抗原特异性 T 细胞中得到了反映。有趣的是,在中和 IL-2 后,Ucp3-/-T 细胞的改变反应部分得到了逆转。总之,这些数据表明 UCP3 可限制幼稚 T 细胞的激活,作为变阻器来减弱 TCR 和 CD28 共受体结合后的信号,从而限制早期激活反应。Ucp3 缺失改变体内和体外 Th17:Treg 细胞平衡的观察结果表明,UCP3 可能是治疗 Th17 细胞介导的自身免疫性疾病的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc96/7676685/379d5b844e0f/pone.0239713.g001.jpg

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