TCR-JANUS 衔接蛋白实现双特异性靶向以克服 TCR-T 细胞治疗中的肿瘤异质性
TCR-JANUS engager proteins enable bispecific targeting to overcome tumor heterogeneity in TCR-T cell therapy.
基于 T 细胞受体(TCR)的免疫疗法受限于肿瘤抗原异质性,后者常导致复发。
英文原题:Overcoming T cell tolerance to tumor self-antigens through catch-bond engineering.
Overcoming T cell tolerance to tumor self-antigens through catch-bond engineering.
T细胞由于中枢耐受,对肿瘤自身抗原的反应往往较弱,限制了其清除肿瘤的能力。
T 细胞通常因中枢耐受而对肿瘤自身抗原反应微弱,这限制了它们清除肿瘤的能力。我们利用机械力来改造一种对非突变肿瘤相关抗原(TAA)前列腺酸性磷酸酶(PAP)具有特异性的弱反应性 T 细胞受体(TCR)。我们鉴定出一个 catch-bonding“热点”,其突变通过增加 TCR-pMHC(肽-主要组织相容性复合体)键寿命来增强 T 细胞活性,同时保留生理亲和力和抗原精细特异性。表达这些工程化 TCR 的 T 细胞在肿瘤中表现出远为优越的扩增、效应表型以及肿瘤清除。晶体结构和分子动力学模拟揭示,catch-bond 热点处的单个氨基酸突变通过 TCR-pMHC 界面处的水重排使 TCR 易于与肽相互作用。Catch-bond 工程是一种可行的基于生物物理学的策略,可将耐受化的抗肿瘤 T 细胞转化为强效的 TCR-T 细胞治疗杀伤细胞。
T cells are often weakly responsive to tumor self-antigens because of central tolerance, constraining their ability to eliminate tumors. We exploited mechanical force to engineer a weakly reactive T cell receptor (TCR) specific for a nonmutated tumor-associated antigen (TAA), prostatic acid phosphatase (PAP). We identified a catch-bonding "hotspot" whose mutation enhanced T cell activity by increasing TCR-pMHC (peptide-major histocompatibility complex) bond lifetime while preserving physiological affinities and antigen fine specificities. T cells expressing these engineered TCRs showed vastly superior expansion in the tumor, effector phenotypes, and tumor elimination. Crystal structures and molecular dynamics simulations revealed a single amino acid mutation at the catch-bond hotspot primes the TCR for peptide interaction through water reorganization at the TCR-pMHC interface. Catch-bond engineering is a viable biophysically based strategy for transforming tolerized antitumor T cells into potent TCR-T cell therapy killers.
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