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基于 PROTAC 的纳米抗原促进树突状细胞疫苗的交叉呈递和转运以增强抗肿瘤疗效

英文原题:PROTAC-based nanoantigens promote cross-presentation and trafficking of dendritic cell vaccine for enhanced antitumor efficacy.

查看英文原题

PROTAC-based nanoantigens promote cross-presentation and trafficking of dendritic cell vaccine for enhanced antitumor efficacy.

PubMed 2025/12/01(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究思路按摘要原文分段

作为最强大的专业抗原呈递细胞,树突状细胞(DCs)能够通过抗原交叉呈递(XPT)有效激活肿瘤特异性细胞毒性T淋巴细胞反应,该过程涉及内体逃逸以及随后外源性肿瘤抗原在胞质中被泛素-蛋白酶体系统降解。遗憾的是,这一重要功能在肿瘤微环境中常常受损。

为恢复DC在抗肿瘤环境中的功能,本研究将PROTAC原理应用于DC疫苗设计,通过化学方法将E3泛素连接酶小分子配体来那度胺与蛋白抗原卵清蛋白(OVA)连接,包裹于膜穿透纳米颗粒碳酸钙(CaCO 3)中,从而在DC内同时实现抗原内体逃逸和蛋白酶体降解。

由含有嵌合抗原的纳米颗粒 lenalidomide-OVA-CaCO3(LOC)制备的 DC 疫苗,称为 LOC-DC,其抗肿瘤效果被发现远高于由包裹在相同 CaCO3 颗粒中的 OVA 制备的普通 DC 疫苗(OC-DC),其机制在于 OVA 抗原泛素化加速及其随后在胞质中降解,用于主要组织相容性复合体 I 相关 XPT。有趣的是,我们制备的 LOC-DC 疫苗的抗肿瘤效果也被证明优于原位 LOC 抗原疫苗,因为 LOC-DC 疫苗在体外被嵌合 LOC 最佳激活,分别表现为 C-C 基序趋化因子受体 7(CCR7)和共刺激分子上调,从而在体内分别用于其淋巴结迁移和 T 细胞刺激。

我们共同建立了PROTAC在DC疫苗设计中的概念验证,通过将E3连接酶与一种蛋白质模型抗原连接,该抗原可随时替换为其他已鉴定的病原体抗原,以引发针对肿瘤或病毒性疾病的强效细胞毒性免疫反应,因此在临床上具有重要意义。

展开英文摘要原文

As the most powerful professional antigen-presenting cell, dendritic cells (DCs), can effectively activate tumor-specific cytotoxic T lymphocyte responses through antigen cross-presentation (XPT), which involves endosome escape and subsequent degradation by ubiquitin-proteasome system of the exogenous tumor antigen in cytosol. Unfortunately, this important function is often compromised in the tumor microenvironment.

To recover the function of DCs in the antitumor settings, in the present study, we applied PROTAC (proteolysis-targeting chimera) principle in DC vaccine design by chemically linking a small molecular ligand of E3 ubiquitin ligase lenalidomide to a protein antigen ovalbumin (OVA), wrapped in membrane-penetrating nanoparticles calcium carbonate (CaCO 3 ), which combined both antigen endosome escape and proteasome degradation in DCs.

The antitumor efficacy of the DC vaccines prepared by the chimeric antigen-containing nanoparticles, lenalidomide-OVA-CaCO 3 (LOC), termed as LOC-DCs, was found to be much higher than that of normal DC vaccines prepared by OVA wrapped in the same CaCO 3 particles (OC-DCs), due mechanistically to the accelerated ubiquitination of OVA antigen and its subsequent degradation in the cytosol for major histocompatibility complex I-associated XPT. Interestingly, the antitumor efficacy of the LOC-DC vaccines we made was also proven to be better than that of LOC antigen vaccines in situ, because the LOC-DC vaccines were optimally activated by the chimeric LOC in vitro in terms of C-C motif chemokine receptor 7 (CCR7) and co-stimulatory molecule upregulation for their lymph node migration and T cell stimulation, respectively, in vivo.

Together, we established a proof of concept for PROTAC in the DC vaccine design by linking E3 ligase to a protein model antigen, which can be readily replaced with other identified pathogenic antigens to elicit robust cytotoxic immune responses against tumors or viral diseases, and thus has serious implications in the clinics.

论文信息

作者
Liu P、Zhou Z、Li Y、Zhang T、Su X、Xu Y、Li J
第一作者单位
Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, Xinjiang University, Urumqi, Xinjiang, China.China
通讯作者单位
Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, Xinjiang University, Urumqi, Xinjiang, China ljyxju@xju.edu.cn yuekang.xu@hotmail.com.China
期刊
Journal for immunotherapy of cancer2025 Dec 1
原文标识
PubMed 41330612 · DOI 10.1136/jitc-2025-012405