Comparative analysis of TCR and CAR signaling informs CAR designs with superior antigen sensitivity and in vivo function

T细胞受体 嵌合抗原受体 抗原 T细胞 CD3型 生物 癌症研究 细胞生物学 免疫学 免疫系统 CD8型
作者
Alexander I. Salter,Anusha Rajan,Jacob J. Kennedy,Richard G. Ivey,Sarah A. Shelby,Isabel Leung,Megan Templeton,Vishaka Muhunthan,Valentin Voillet,Daniel Sommermeyer,Jeffrey R. Whiteaker,Raphaël Gottardo,Sarah L. Veatch,Amanda G. Paulovich,Stanley R. Riddell
出处
期刊:Science Signaling [American Association for the Advancement of Science]
卷期号:14 (697) 被引量:155
标识
DOI:10.1126/scisignal.abe2606
摘要

Chimeric antigen receptor (CAR)-modified T cell therapy is effective in treating lymphomas, leukemias, and multiple myeloma in which the tumor cells express high amounts of target antigen. However, achieving durable remission for these hematological malignancies and extending CAR T cell therapy to patients with solid tumors will require receptors that can recognize and eliminate tumor cells with a low density of target antigen. Although CARs were designed to mimic T cell receptor (TCR) signaling, TCRs are at least 100-fold more sensitive to antigen. To design a CAR with improved antigen sensitivity, we directly compared TCR and CAR signaling in primary human T cells. Global phosphoproteomic analysis revealed that key T cell signaling proteins-such as CD3δ, CD3ε, and CD3γ, which comprise a portion of the T cell co-receptor, as well as the TCR adaptor protein LAT-were either not phosphorylated or were only weakly phosphorylated by CAR stimulation. Modifying a commonplace 4-1BB/CD3ζ CAR sequence to better engage CD3ε and LAT using embedded CD3ε or GRB2 domains resulted in enhanced T cell activation in vitro in settings of a low density of antigen, and improved efficacy in in vivo models of lymphoma, leukemia, and breast cancer. These CARs represent examples of alterations in receptor design that were guided by in-depth interrogation of T cell signaling.
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