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NUT 癌中共享 PRAME 表位作为 T 细胞靶点

英文原题:Shared PRAME Epitopes are T-Cell Targets in NUT Carcinoma.

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Shared PRAME Epitopes are T-Cell Targets in NUT Carcinoma.

PubMed 2025/11/22(内容时间) bioRxiv

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研究概要

PRAME 在 NUT 癌中高表达且表达频繁,而导致 NUT 癌最常见的癌蛋白 BRD4::NUTM1 促成了这种高 PRAME 水平。

中文摘要

NUT 癌是一种罕见但致死性极高的实体瘤,尚无有效标准治疗。NUT 癌由含溴结构域的 NUTM1 融合癌基因驱动,最常见的是 BRD4::NUTM1。BRD4::NUTM1 招募 p300,使 H3K27 乙酰化,形成称为“巨型结构域”的广阔超乙酰化染色质区域,并导致 MYC 等相应癌基因过表达。研究者假设 BRD4::NUTM1 引发的转录失调会产生可用于治疗的癌症特异性抗原。

研究整合基因组学、计算抗原预测软件、使用单标记及双标记肽标准品的靶向免疫肽组学,以及多种细胞系(N = 5)、患者来源异种移植模型、组织芯片(N = 77)和 Tempus AI 测序数据库中具有 NUTM1 融合证据的患者样本(N = 165)的功能获得/缺失遗传实验。研究者构建了以 brenetafusp 为模型的 PRAME 425 TCR×SP34 CD3 双特异性分子,并根据 anzutresgene autoleucel 构建 PRAME 425 TCR-T 细胞,在体外用于 NUT 癌细胞。

在携带三种经典 NUT 癌融合基因(BRD4::NUTM1、BRD3::NUTM1 和 NSD3::NUTM1)的患者样本中,PRAME 是最常表达的癌睾抗原。组织芯片中 56%(43/77)的 NUT 癌样本 PRAME 染色阳性。在 HEK 293T 细胞中表达 BRD4::NUTM1 会提高 PRAME 水平;在 NUT 癌细胞中敲除 BRD4::NUTM1 会降低 PRAME 水平。免疫肽组学检测到的 PRAME 来源 HLA 配体(N = 9)多于所有其他癌睾抗原之和(N = 5)。靶向质谱在 100%(4/4)的 HLA-A*02⁺、PRAME⁺ NUT 癌样本中检测到 HLA-A*02:01/SLLQHLIGL(PRAME 425)表位,水平高于 0.01 fM;其水平高于 HLA-A*02:01/RLDQLLRHV(PRAME 312)或 HLA-A*02:01/YLHARLREL(PRAME 462)。PRAME 425 TCR×SP34 CD3 双特异性分子和 PRAME 425 TCR-T 细胞均对 PRAME⁺ NUT 癌细胞表现出强效 T 细胞介导的细胞毒作用。

NUT 癌中 PRAME 高表达且常见;最常见的致癌融合基因 BRD4::NUTM1 促进 PRAME 高表达。HLA I 类分子呈递的 PRAME 表位是此前未识别的 NUT 癌治疗弱点,值得在这一长期被忽视的患者群体中开展 PRAME 靶向免疫疗法临床试验。已有认识:NUT 癌是严重恶性肿瘤,对细胞毒性化疗、T 细胞检查点阻断和以溴结构域抑制剂为代表的靶向治疗均难治。本研究新增:NUT 癌肿瘤中癌睾基因 PRAME 高表达;最常见致癌基因 BRD4::NUTM1 促进其高表达。NUT 癌细胞可通过 HLA I 类分子呈递 PRAME 表位,并对 PRAME 靶向 T 细胞介导的细胞毒作用敏感。研究对实践或政策的影响:结果支持开展 I/II 期临床试验,在 PRAME⁺ NUT 癌患者中测试 brenetafusp 或 anzutresgene autoleucel 等 PRAME 免疫疗法。

展开英文摘要原文

NUT carcinoma is a rare but highly lethal solid tumor without an effective standard of care. NUT carcinoma is caused by bromodomain-containing NUTM1 fusion oncogenes, most commonly BRD4::NUTM1 . BRD4::NUTM1 recruits p300 to acetylate H3K27 forming expansive stretches of hyperacetylated chromatin called "megadomains" with the overexpression of corresponding oncogenes, including MYC . We hypothesized that transcriptional dysregulation caused by BRD4::NUTM1 would lead to the generation of cancer-specific antigens that could be therapeutically actionable.

We integrated genomics, computational antigen prediction software, targeted immunopeptidomics using single- and double-labeled peptide standards, and gain/loss-of-function genetic experiments on a panel of cell lines (N=5), a patient derived xenograft, a tissue microarray (N=77), and patient samples from the Tempus AI Sequencing Database harboring evidence of NUTM1 fusions (N=165). We created an PRAME 425 T-cell receptor x SP34 CD3 bispecific molecule modeled after brenetafusp, an PRAME 425 T-cell receptor bispecific T-cell engager, as well as PRAME 425 TCR T-cells based on anzutresgene autoleucel and we applied these products to NUT carcinoma cells in vitro .

We identified PRAME as the most commonly expressed cancer/testis antigen in patient samples harboring the three canonical NUT carcinoma fusions ( BRD4::NUTM1 , BRD3::NUTM1 , and NSD3::NUTM1 ). Additionally, 56% (43/77) of NUT carcinoma tissue microarray samples stained positive for PRAME. BRD4::NUTM1 expression in HEK 293T cells enhanced PRAME levels and BRD4::NUTM1 knockout in NUT carcinoma cells reduced PRAME levels. Immunopeptidomics detected more PRAME-derived HLA ligands (N=9) than all other cancer/testis antigens combined (N=5). Targeted mass spectrometry detected the HLA-A*02:01/SLLQHLIGL (PRAME 425 ) epitope in 100% (4/4) of HLA-A*02+, PRAME+ NUT carcinoma samples at higher levels (>0.01 fM) than HLA-A*02:01/RLDQLLRHV (PRAME 312 ) or HLA-A*02:01/YLHARLREL (PRAME 462 ). The PRAME 425 T-cell receptor x SP34 CD3 bispecific molecule and PRAME 425 TCR T-cells each exhibited potent, T-cell mediated cytotoxicity against PRAME + NUT carcinoma cells.

PRAME is highly and frequently expressed in NUT carcinoma and the most common oncoprotein causing NUT carcinoma, BRD4::NUTM1, contributes to these high PRAME levels. PRAME epitopes presented by HLA Class I are a previously unrecognized therapeutic vulnerability for NUT carcinoma that warrant clinical trials testing PRAME targeted immunotherapies in this neglected patient population. WHAT IS ALREADY KNOWN ON THIS TOPIC: NUT carcinoma is a devastating malignancy that is recalcitrant to cytotoxic chemotherapy, T-cell checkpoint blockade, and targeted therapies in the form of bromodomain inhibitors. WHAT THIS STUDY ADDS: NUT carcinoma tumors are high in the cancer/testis gene PRAME . The oncogene most commonly causing NUT carcinoma, BRD4::NUTM1 , contributes to these high levels. NUT carcinoma cells present PRAME epitopes on HLA Class I molecules and are susceptible to PRAME-directed, T-cell mediated cytotoxicity. HOW THIS STUDY MIGHT AFFECT RESEARCH PRACTICE OR POLICY: Our results argue for phase I/II clinical trials testing PRAME immunotherapies like brenetafusp or anzutresgene autoleucel in PRAME + NUT carcinoma patients.

论文信息

作者
Jensen JL、Peterson SK、Sambade M、Alley JR、Yu S、Kinjo T、Bennett SN、Vensko SP
文献类型
预印本
期刊
bioRxiv : the preprint server for biology2025 Nov 22
原文标识
PubMed 40161761 · DOI 10.1101/2025.03.07.642090