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源自小鼠 MAGE 型抗原 P1A 的新型 H-2D(b) 限制性 CD8 表位在 C57BL/6 小鼠中介导抗肿瘤免疫

英文原题:Novel H-2D(b)-restricted CD8 epitope derived from mouse MAGE-type antigen P1A mediates antitumor immunity in C57BL/6 mice.

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Novel H-2D(b)-restricted CD8 epitope derived from mouse MAGE-type antigen P1A mediates antitumor immunity in C57BL/6 mice.

PubMed 2024/10/08(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

我们鉴定了在 H-2 b 背景下呈递的 MAGE 型 P1A 肿瘤抗原的第一个 CD8+ T 细胞表位。这为利用 C57BL/6 背景下丰富的基因改造小鼠品系,深入剖析 MAGE 型特异性抗肿瘤免疫机制开辟了新视角。这应能促进特异性癌症免疫疗法的进步。

研究思路结论见上方概要

黑色素瘤抗原基因(MAGE)型抗原是癌症免疫治疗的有前景靶点,因为它们表达于癌细胞,而不表达于正常组织,但男性生殖系细胞除外。小鼠P1A抗原具有这种MAGE型表达模式,并已被用作临床前肿瘤模型中的靶抗原,旨在诱导抗肿瘤CD8+ T细胞反应。然而,迄今为止仅鉴定出一个受MHC I限制的P1A表位。该表位由H-2d遗传背景小鼠(如DBA/2和BALB/c)中的H-2Ld呈递。鉴于C57BL/6背景中存在多种基因改造小鼠品系,明确由H-2b单倍型呈递的P1A T细胞表位将有助于促进更精细的机制研究。

我们采用基于编码P1A的黑猩猩腺病毒(ChAdOx1)和改良安卡拉痘苗病毒(MVA)的异源初免-加强疫苗接种策略,在C57BL/6小鼠中诱导P1A特异性T细胞应答。通过细胞内细胞因子染色和多参数流式细胞术检测疫苗诱导的应答。我们定位了免疫原性CD8表位并克隆了同源T细胞受体(TCR),将其用于过继性细胞治疗。

ChAdOx1/MVA-P1A 疫苗接种在 C57BL/6 小鼠中诱导了强烈的 P1A 特异性 CD8+ T 细胞反应。该反应针对单一 9 氨基酸肽,序列为 FAVVTTSFL,对应 P1A 氨基酸 43-51。它由 H-2D b 呈递。P1A 疫苗接种,尤其是肌肉注射 ChAdOx1 和静脉注射 MVA,保护小鼠免受表达 P1A 的 EL4(EL4.P1A)肿瘤细胞攻击。我们鉴定并克隆了四个对 H-2D b 限制性 P1A 43-51 肽具有特异性的 TCR。转导这些 TCR 的 T 细胞识别 EL4.P1A,但不识别 MC38.P1A 和 B16F10.P1A 肿瘤细胞,可能是由于这些细胞中存在的蛋白酶体亚型差异。在携带 EL4.P1A 肿瘤的小鼠中过继转移这些 T 细胞减少了肿瘤生长并提高了生存率。

展开英文摘要原文

Melanoma antigen gene (MAGE)-type antigens are promising targets for cancer immunotherapy as they are expressed in cancer cells but not in normal tissues, except for male germline cells. The mouse P1A antigen shares this MAGE-type expression pattern and has been used as a target antigen in preclinical tumor models aiming to induce antitumor CD8 + T-cell responses. However, so far only one MHC I-restricted P1A epitope has been identified. It is presented by H-2L d in mice of the H-2 d genetic background such as DBA/2 and BALB/c. Given the availability of multiple genetically altered strains of mice in the C57BL/6 background, it would be useful to define P1A T-cell epitopes presented by the H-2 b haplotype, to facilitate more refined mechanistic studies.

We employed a heterologous prime-boost vaccination strategy based on a chimpanzee adenovirus (ChAdOx1) and a modified vaccinia Ankara (MVA) encoding P1A, to induce P1A-specific T-cell responses in C57BL/6 mice. Vaccine-induced responses were measured by intracellular cytokine staining and multiparameter flow cytometry. We mapped the immunogenic CD8 epitope and cloned the cognate T-cell receptor (TCR), which we used for adoptive cell therapy.

ChAdOx1/MVA-P1A vaccination induces a strong P1A-specific CD8 + T-cell response in C57BL/6 mice. This response is directed against a single 9-amino acid peptide with sequence FAVVTTSFL, corresponding to P1A amino acids 43-51. It is presented by H-2D b . P1A vaccination, especially with ChAdOx1 administered intramuscularly and MVA delivered intravenously, protected mice against P1A-expressing EL4 (EL4.P1A) tumor cell challenge. We identified and cloned four TCRs that are specific for the H-2D b -restricted P1A 43-51 peptide. T cells transduced with these TCRs recognized EL4.P1A but not MC38.P1A and B16F10.P1A tumor cells, likely due to differences in the proteasome subtypes present in these cells. Adoptive transfer of these T cells in mice bearing EL4.P1A tumors reduced tumor growth and increased survival.

We identified the first CD8 + T-cell epitope of the MAGE-type P1A tumor antigen presented in the H-2 b background. This opens new perspectives for mechanistic studies dissecting MAGE-type specific antitumor immunity, making use of the wealth of genetically altered mouse strains available in the C57BL/6 background. This should facilitate the advancement of specific cancer immunotherapies.

论文信息

作者
McAuliffe J、Panetti S、Steffke E、Wicki A、Pereira-Almeida V、Noblecourt L、Hu Y、Guo SYW
第一作者单位
Ludwig Institute for Cancer Research, Nuffield Department of Medicine, University of Oxford, Oxford, UK.United Kingdom
通讯作者单位
Ludwig Institute for Cancer Research, Nuffield Department of Medicine, University of Oxford, Oxford, UK carol.leung@immonc.ox.ac.uk benoit.vandeneynde@ludwig.ox.ac.uk.United Kingdom
期刊
Journal for immunotherapy of cancer2024 Oct 8
原文标识
PubMed 39384196 · DOI 10.1136/jitc-2024-008998