Medical Scientist Training Program, Perelman School of Medicine of the University of Pennsylvania, Philadelphia, PA 19104, USA.
Department of Pathology and Laboratory Medicine, Perelman School of Medicine of the University of Pennsylvania, Philadelphia, PA 19104, USA.
Sci Signal. 2020 Mar 31;13(625):eaay8248. doi: 10.1126/scisignal.aay8248.
Clinical response to chimeric antigen receptor (CAR) T cell therapy is correlated with CAR T cell persistence, especially for CAR T cells that target CD19 hematologic malignancies. 4-1BB-costimulated CAR (BBζ) T cells exhibit longer persistence after adoptive transfer than do CD28-costimulated CAR (28ζ) T cells. 4-1BB signaling improves T cell persistence even in the context of 28ζ CAR activation, which indicates distinct prosurvival signals mediated by the 4-1BB cytoplasmic domain. To specifically study signal transduction by CARs, we developed a cell-free, ligand-based activation and ex vivo culture system for CD19-specific CAR T cells. We observed greater ex vivo survival and subsequent expansion of BBζ CAR T cells when compared to 28ζ CAR T cells. We showed that only BBζ CARs activated noncanonical nuclear factor κB (ncNF-κB) signaling in T cells basally and that the anti-CD19 BBζ CAR further enhanced ncNF-κB signaling after ligand engagement. Reducing ncNF-κB signaling reduced the expansion and survival of anti-CD19 BBζ T cells and was associated with a substantial increase in the abundance of the most pro-apoptotic isoforms of Bim. Although our findings do not exclude the importance of other signaling differences between BBζ and 28ζ CARs, they demonstrate the necessary and nonredundant role of ncNF-κB signaling in promoting the survival of BBζ CAR T cells, which likely underlies the engraftment persistence observed with this CAR design.
嵌合抗原受体 (CAR) T 细胞治疗的临床反应与 CAR T 细胞的持久性相关,尤其是针对 CD19 血液恶性肿瘤的 CAR T 细胞。与 CD28 共刺激的 CAR(28ζ)T 细胞相比,4-1BB 共刺激的 CAR(BBζ)T 细胞在过继转移后表现出更长的持久性。4-1BB 信号即使在 28ζ CAR 激活的情况下也能改善 T 细胞的持久性,这表明由 4-1BB 胞质结构域介导的不同的促生存信号。为了专门研究 CAR 的信号转导,我们开发了一种无细胞、基于配体的激活和体外培养系统,用于 CD19 特异性 CAR T 细胞。与 28ζ CAR T 细胞相比,我们观察到 BBζ CAR T 细胞具有更高的体外存活率和随后的扩增。我们表明,只有 BBζ CAR 在基础状态下激活 T 细胞中的非典型核因子 κB(ncNF-κB)信号,并且抗 CD19 BBζ CAR 在配体结合后进一步增强 ncNF-κB 信号。减少 ncNF-κB 信号会降低抗 CD19 BBζ T 细胞的扩增和存活,并与最促凋亡的 Bim 同工型的丰度显著增加相关。尽管我们的发现不排除 BBζ 和 28ζ CAR 之间其他信号差异的重要性,但它们证明了 ncNF-κB 信号在促进 BBζ CAR T 细胞存活中的必要和非冗余作用,这可能是这种 CAR 设计观察到的植入物持久性的基础。