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使用Jurkat报告T细胞系评估新型嵌合抗原受体的功能。

Using the Jurkat reporter T cell line for evaluating the functionality of novel chimeric antigen receptors.

作者信息

Jahan Farhana, Koski Jan, Schenkwein Diana, Ylä-Herttuala Seppo, Göös Helka, Huuskonen Sini, Varjosalo Markku, Maliniemi Pilvi, Leitner Judith, Steinberger Peter, Bühring Hans-Jörg, Vettenranta Kim, Korhonen Matti

机构信息

R&D, Finnish Red Cross Blood Service, Helsinki, Finland.

A.I Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, Finland.

出版信息

Front Mol Med. 2023 Feb 22;3:1070384. doi: 10.3389/fmmed.2023.1070384. eCollection 2023.

Abstract

T cells that are genetically modified with chimeric antigen receptor (CAR) hold promise for immunotherapy of cancer. Currently, there are intense efforts to improve the safety and efficacy of CAR T cell therapies against liquid and solid tumors. Earlier we designed a novel CAR backbone (FiCAR) where the spacer is derived from immunoglobulin (Ig) -like domains of the signal-regulatory protein alpha (SIRPα). However, the analysis of novel CAR using primary T cells is slow and laborious. To explore the versatility of the CAR backbone, we designed a set of variant FiCARs with different spacer lengths and targeting antigens. To expedite the analysis of the novel CARs, we transduced the FiCAR genes using lentiviruses into Jurkat reporter T cells carrying fluorescent reporter genes. The expression of fluorescent markers in response to FiCAR engagement with targets was analyzed by flow cytometry, and cytotoxicity was evaluated using killing assays. Furthermore, the killing mechanisms that are employed by FiCAR-equipped Jurkat T cells were investigated by flow cytometry, and the intracellular pathways involved in signaling by FiCAR were analyzed by phosphoproteomic analysis using mass spectrometry. Seven different CARs were designed and transduced into Jurkat reporter cells. We show that the SIRPα derived FiCARs can be detected by flow cytometry using the SE12B6A4 antibody recognizing SIRPα. Furthermore, FiCAR engagement leads to robust activation of NFκβ and NFAT signaling, as demonstrated by the expression of the fluorescent reporter genes. Interestingly, the Jurkat reporter system also revealed tonic signaling by a HER-2 targeting FiCAR. FiCAR-equipped Jurkat T cells were cytotoxic in cocultures with target cells and target cell engagement lead to an upregulation of CD107a on the Jurkat reporter T cell surface. Phosphoproteomic analyses confirmed signal transduction the intracellular CD28/CD3ζ sequences upon the interaction of the FiCAR1 with its antigen. In addition, downstream signaling of CD3ζ/ZAP70- SLP-76-PLCγ, PI3K-AKT-NFκB pathways and activation of NFAT and AP-1 were observed. We conclude that the FiCAR backbone can be shortened and lengthened at will by engineering it with one to three SIRPα derived Ig-like domains, and the FiCARs are functional when equipped with different single chain variable fragment target binding domains. The Jurkat reporter system expedites the analysis of novel CARs as to their expression, signaling function, evaluation of tonic signaling issues and cytotoxic activity.

摘要

经嵌合抗原受体(CAR)基因改造的T细胞在癌症免疫治疗方面具有广阔前景。目前,人们正在大力努力提高CAR-T细胞疗法针对液体肿瘤和实体肿瘤的安全性和疗效。此前我们设计了一种新型CAR骨架(FiCAR),其间隔区源自信号调节蛋白α(SIRPα)的免疫球蛋白(Ig)样结构域。然而,使用原代T细胞对新型CAR进行分析既缓慢又费力。为了探索CAR骨架的通用性,我们设计了一组具有不同间隔区长度和靶向抗原的变体FiCAR。为了加快对新型CAR的分析,我们使用慢病毒将FiCAR基因转导到携带荧光报告基因的Jurkat报告T细胞中。通过流式细胞术分析荧光标记物在FiCAR与靶标结合后的表达情况,并使用杀伤试验评估细胞毒性。此外,通过流式细胞术研究了配备FiCAR的Jurkat T细胞所采用的杀伤机制,并使用质谱通过磷酸化蛋白质组学分析来分析FiCAR信号传导中涉及的细胞内途径。设计了七种不同的CAR并将其转导到Jurkat报告细胞中。我们发现,使用识别SIRPα的SE12B6A4抗体,通过流式细胞术可以检测到源自SIRPα的FiCAR。此外,如荧光报告基因的表达所示,FiCAR的结合会导致NFκβ和NFAT信号的强烈激活。有趣的是,Jurkat报告系统还揭示了靶向HER-2的FiCAR的持续性信号传导。配备FiCAR的Jurkat T细胞在与靶细胞共培养时具有细胞毒性,并且靶细胞的结合会导致Jurkat报告T细胞表面的CD107a上调。磷酸化蛋白质组学分析证实了FiCAR1与其抗原相互作用时细胞内CD28/CD3ζ序列的信号转导。此外,还观察到了CD3ζ/ZAP70-SLP-76-PLCγ、PI3K-AKT-NFκB途径的下游信号传导以及NFAT和AP-1的激活。我们得出结论,通过用一到三个源自SIRPα的Ig样结构域对FiCAR骨架进行工程改造,可以随意缩短或延长该骨架,并且当配备不同的单链可变片段靶标结合结构域时,FiCAR具有功能。Jurkat报告系统加快了对新型CAR的表达、信号功能、持续性信号问题评估和细胞毒性活性的分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d5f/11285682/822a899dbca3/fmmed-03-1070384-g001.jpg

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