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Ligand-Induced Degradation of a CAR Permits Reversible Remote Control of CAR T Cell Activity In Vitro and In Vivo

机译:Ligand诱导的汽车降解允许在体外和体内可逆远程控制汽车T细胞活性

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摘要

Chimeric antigen receptor (CAR)-modified T cells are endowed with novel antigen specificity and are most often administered to patients without an engineered mechanism to control the CAR T cells once infused. “Suicide switches” such as the small molecule-controlled, inducible caspase-9 (iCas9) system afford the ability to selectively eliminate engineered T cells; however, these approaches are designed for all-or-none, irreversible termination of an ongoing immune response. In order to permit reversible and adjustable modulation, we have created a CAR that is capable of on-demand downregulation by fusing the CAR to a previously developed ligand-induced degradation (LID) domain. Addition of a small molecule ligand triggers exposure of a cryptic degron within the LID domain, resulting in proteasomal degradation of the CAR-LID fusion protein and loss of CAR on the surface of T cells. This fusion construct allowed for reversible and “tunable” inhibition of CAR T cell activity in vitro. Delivery of the triggering molecule in CAR-LID-treated tumor-bearing mice temporarily reduced CAR activity through modulation of CAR surface expression. The ability to more flexibly modulate CAR T cell expression through a small molecule provides a platform for controlling possible adverse side effects, as well as preclinical investigations of CAR T cell biology.
机译:嵌合抗原受体(轿厢)制抗体T细胞具有新颖的抗原特异性,并且通常常常向没有工程机制的患者施用以控制汽车T细胞一次注入。 “自杀式开关”,如小分子控制,诱导型Caspase-9(ICAS9)系统提供了选择性消除工程的T细胞的能力;然而,这些方法是针对全部或无持续的免疫反应的不可逆转终止的。为了允许可逆和可调节的调制,我们创造了一种汽车,该汽车能够通过将轿厢融合到先前开发的配体诱导的降解(盖子)域来按需。添加小分子配体触发盖结构域内的隐蔽血管的曝光,导致汽车盒融合蛋白的蛋白酶体降解和T细胞表面上的汽车丧失。这种融合构建体允许在体外可逆和“可调”抑制汽车T细胞活性的抑制。通过调制汽车表面表达,在汽车盖治疗的肿瘤造山鼠中递送触发分子暂时降低了汽车活动。通过小分子更灵活地调节汽车T细胞表达的能力提供了一种用于控制可能的不利副作用的平台,以及汽车T细胞生物学的临床前调查。

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