Division of Hematology, Department of Medicine, Jichi Medical University, Tochigi, Japan.
Core Center of Research Apparatus, Jichi Medical University, Tochigi, Japan.
Transplant Cell Ther. 2021 Mar;27(3):231.e1-231.e8. doi: 10.1016/j.jtct.2020.11.012. Epub 2020 Dec 14.
Mesenchymal stromal cells (MSCs) have been shown to inhibit aerobic glycolysis in activated T cells, leading to increased autophagy. Although tryptophan depletion induced by indoleamine 2,3-dioxygenase (IDO) generated by MSCs has been suggested as a potential mechanism, we found that this inhibition was completely abolished when T cells were physically separated from MSCs using the Transwell system. Instead, in the current study, we demonstrate that programmed cell death 1 receptor (PD-1) and its ligand PD-L1, the expression of which is induced on activated T cells and MSCs, respectively, in response to IFN-γ are involved in this inhibition. Blockade of PD-1/PD-L1 interaction by blocking antibodies significantly restored glucose uptake, glycolytic activity, and cluster formation of activated T cells, whereas a specific inhibitor of IDO, 1-methyl-DL-tryptophan, had no effect. Neither surface nor cytoplasmic glucose transporter-1 expression on T cells was changed by MSCs. In addition, glycolytic gene expression in activated T cells was not inhibited despite the presence of MSCs. However, we found that hexokinase II (HK2) protein expression was markedly decreased in activated T cells that had been cocultured with MSCs. PD-1 blocking antibody restored HK2 expression. Taken together, our findings indicate that the PD-1/PD-L1 axis is involved in the MSC-mediated suppression of T cell glycolysis by negatively regulating HK2 activity at the protein level, but not at the mRNA level.
间充质基质细胞 (MSCs) 已被证明可抑制活化 T 细胞的有氧糖酵解,导致自噬增加。虽然间充质细胞产生的色氨酸分解酶(IDO)诱导的色氨酸耗竭被认为是一种潜在的机制,但我们发现,当使用 Transwell 系统将 T 细胞与 MSCs 物理分离时,这种抑制作用完全被消除。相反,在本研究中,我们证明程序性细胞死亡 1 受体 (PD-1)及其配体 PD-L1 的表达分别在活化的 T 细胞和 MSCs 中被诱导,以响应 IFN-γ,参与这种抑制作用。通过阻断抗体阻断 PD-1/PD-L1 相互作用可显著恢复活化 T 细胞的葡萄糖摄取、糖酵解活性和集落形成,而 IDO 的特异性抑制剂 1-甲基-DL-色氨酸则没有效果。MSCs 并未改变 T 细胞表面和细胞质葡萄糖转运蛋白-1 的表达。此外,尽管存在 MSCs,但活化 T 细胞中的糖酵解基因表达并未受到抑制。然而,我们发现与 MSCs 共培养的活化 T 细胞中的己糖激酶 II (HK2) 蛋白表达明显降低。PD-1 阻断抗体恢复了 HK2 的表达。总之,我们的研究结果表明,PD-1/PD-L1 轴通过负调控 HK2 蛋白水平的活性,而不是通过 mRNA 水平,参与 MSC 介导的 T 细胞糖酵解抑制,但不参与糖酵解抑制。