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一种免疫蛋白质组学方法,用于表征 CAR 相互作用组和信号体。

An immunoproteomic approach to characterize the CAR interactome and signalosome.

机构信息

Department of Immunology, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612, USA.

Department of Drug Discovery, H. Lee Moffitt Cancer Center and Research Institute, Tampa, FL 33612, USA.

出版信息

Sci Signal. 2019 Feb 12;12(568):eaap9777. doi: 10.1126/scisignal.aap9777.

Abstract

Adoptive transfer of T cells that express a chimeric antigen receptor (CAR) is an approved immunotherapy that may be curative for some hematological cancers. To better understand the therapeutic mechanism of action, we systematically analyzed CAR signaling in human primary T cells by mass spectrometry. When we compared the interactomes and the signaling pathways activated by distinct CAR-T cells that shared the same antigen-binding domain but differed in their intracellular domains and their in vivo antitumor efficacy, we found that only second-generation CARs induced the expression of a constitutively phosphorylated form of CD3ζ that resembled the endogenous species. This phenomenon was independent of the choice of costimulatory domains, or the hinge/transmembrane region. Rather, it was dependent on the size of the intracellular domains. Moreover, the second-generation design was also associated with stronger phosphorylation of downstream secondary messengers, as evidenced by global phosphoproteome analysis. These results suggest that second-generation CARs can activate additional sources of CD3ζ signaling, and this may contribute to more intense signaling and superior antitumor efficacy that they display compared to third-generation CARs. Moreover, our results provide a deeper understanding of how CARs interact physically and/or functionally with endogenous T cell molecules, which will inform the development of novel optimized immune receptors.

摘要

嵌合抗原受体 (CAR) 表达的 T 细胞过继转移是一种已批准的免疫疗法,可能对某些血液系统癌症具有治愈作用。为了更好地了解治疗机制,我们通过质谱法系统地分析了人原代 T 细胞中的 CAR 信号。当我们比较具有相同抗原结合结构域但在细胞内结构域和体内抗肿瘤疗效上不同的不同 CAR-T 细胞的互作组和激活的信号通路时,我们发现只有第二代 CAR 诱导了与内源性物质相似的组成性磷酸化 CD3ζ 形式的表达。这种现象不依赖于共刺激结构域或铰链/跨膜区的选择。相反,它取决于细胞内结构域的大小。此外,第二代设计还与下游二级信使的更强磷酸化相关,这可以通过全局磷酸蛋白质组分析来证明。这些结果表明,第二代 CAR 可以激活 CD3ζ 信号的其他来源,这可能有助于它们与第三代 CAR 相比显示出更强的信号和更好的抗肿瘤疗效。此外,我们的结果提供了对 CAR 如何与内源性 T 细胞分子物理和/或功能相互作用的更深入了解,这将为新型优化免疫受体的开发提供信息。

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