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利用丙氨酸扫描引导的 T 细胞展示选择系统工程改造 T 细胞受体。

Engineering improved T cell receptors using an alanine-scan guided T cell display selection system.

机构信息

NYU Cancer institute, New York University School of Medicine, NewYork, NY 10016, USA.

出版信息

J Immunol Methods. 2013 Jun 28;392(1-2):1-11. doi: 10.1016/j.jim.2013.02.018. Epub 2013 Mar 13.

Abstract

T cell receptors (TCRs) on T cells recognize peptide-major histocompatibility complex (pMHC) molecules on the surface of antigen presenting cells and this interaction determines the T cell immune response. Due to negative selection, naturally occurring TCRs bind self (tumor) peptides with low affinity and have a much higher affinity for foreign antigens. This complicates isolation of naturally occurring, high affinity TCRs that mediate more effective tumor rejection for therapeutic purposes. An attractive approach to resolve this issue is to engineer high affinity TCRs in vitro using phage, yeast or mammalian TCR display systems. A caveat of these systems is that they rely on a large library by random mutagenesis due to the lack of knowledge regarding the specific interactions between the TCR and pMHC. We have focused on the mammalian retroviral display system because it uniquely allows for direct comparison of TCR-pMHC-binding properties with T-cell activation outcomes. Through an alanine-scanning approach, we are able to quickly map the key amino acid residues directly involved in TCR-pMHC interactions thereby significantly reducing the library size. Using this method, we demonstrate that for a self-antigen-specific human TCR (R6C12) the key residues for pMHC binding are located in the CDR3β region. This information was used as a basis for designing an efficacious TCR CDR3α library that allowed for selection of TCRs with higher avidity than the wild-type as evaluated through binding and activation experiments. This is a direct approach to target specific TCR residues in TCR library design to efficiently engineer high avidity TCRs that may potentially be used to enhance adoptive immunotherapy treatments.

摘要

T 细胞上的 T 细胞受体 (TCRs) 识别抗原呈递细胞表面的肽-主要组织相容性复合物 (pMHC) 分子,这种相互作用决定了 T 细胞免疫反应。由于负选择,天然存在的 TCR 与自身(肿瘤)肽的亲和力较低,而对外国抗原的亲和力要高得多。这使得分离介导更有效肿瘤排斥的天然、高亲和力 TCR 变得复杂,从而达到治疗目的。解决这个问题的一种有吸引力的方法是使用噬菌体、酵母或哺乳动物 TCR 展示系统在体外工程化高亲和力 TCR。这些系统的一个缺点是,由于缺乏关于 TCR 与 pMHC 之间特定相互作用的知识,它们依赖于通过随机诱变产生的大型文库。我们专注于哺乳动物逆转录病毒展示系统,因为它唯一允许直接比较 TCR-pMHC 结合特性与 T 细胞激活结果。通过丙氨酸扫描方法,我们能够快速映射直接参与 TCR-pMHC 相互作用的关键氨基酸残基,从而大大减少文库大小。使用这种方法,我们证明对于一种自身抗原特异性的人类 TCR(R6C12),与 pMHC 结合的关键残基位于 CDR3β 区域。这些信息被用作设计有效 TCR CDR3α 文库的基础,该文库允许选择比野生型具有更高亲和力的 TCR,如通过结合和激活实验评估的那样。这是一种直接针对 TCR 文库设计中特定 TCR 残基的方法,可有效地工程化高亲和力 TCR,可能用于增强过继免疫治疗。

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