Multiplexed activation of endogenous genes by CRISPRa elicits potent antitumor immunity

CRISPRα介导的内源基因多重激活可诱导强效的抗肿瘤免疫反应。

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作者:Guangchuan Wang # ,Ryan D Chow # ,Zhigang Bai ,Lvyun Zhu ,Youssef Errami ,Xiaoyun Dai ,Matthew B Dong ,Lupeng Ye ,Xiaoya Zhang ,Paul A Renauer ,Jonathan J Park ,Li Shen ,Hanghui Ye ,Charles S Fuchs ,Sidi Chen

Abstract

Immunotherapy has transformed cancer treatment. However, current immunotherapy modalities face various limitations. In the present study, we developed multiplexed activation of endogenous genes as an immunotherapy (MAEGI), a new form of immunotherapy that elicits antitumor immunity through multiplexed activation of endogenous genes in tumors. We leveraged CRISPR activation (CRISPRa) to directly augment the in situ expression of endogenous genes, and thereby the presentation of tumor antigens, leading to dramatic antitumor immune responses. Deploying this as a cell-based vaccination strategy showed efficacy in both prophylactic and therapeutic settings. Intratumoral adeno-associated virus delivery of CRISPRa libraries elicited strong antitumor immunity across multiple cancer types. Precision targeting of mutated gene sets eradicated a large fraction of established tumors at both local and distant sites. This treatment modality led to alterations in the tumor microenvironment, marked by enhanced T cell infiltration and antitumor immune signatures. Multiplexed endogenous gene activation is a versatile and highly scalable strategy to elicit potent immune responses against cancer, distinct from all existing cancer therapies.

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