免疫原性
生物
免疫疗法
髓系白血病
免疫学
埃利斯波特
表位
免疫系统
抗原
T细胞
癌症研究
计算生物学
作者
Peng Jin,Jie Shen,Ming Zhao,Jinyi Yu,Wen Jin,Ge Jiang,Zeyi Li,Mengke He,Xiaxin Liu,Shishuang Wu,Fangyi Dong,Yuncan Cao,Hongming Zhu,Xiaoyang Li,Xiaoling Wang,Yunxiang Zhang,Zhen Jin,Junmin Li,Kankan Wang
出处
期刊:Cancer Letters
[Elsevier BV]
日期:2024-12-24
卷期号:611: 217427-217427
被引量:6
标识
DOI:10.1016/j.canlet.2024.217427
摘要
Acute myeloid leukemia (AML) has lagged in benefiting from immunotherapies, primarily due to the scarcity of actionable AML-specific antigens. Driver mutations represent promising immunogenic targets, but a comprehensive characterization of the AML neoantigen landscape and their impact on patient outcomes and the AML immune microenvironment remain unclear. Herein, we conducted matched DNA and RNA sequencing on 304 AML patients and extensively integrated data from additional ∼2500 AML cases, identifying 49 driver genes, notably characterized by a significant proportion of insertions and deletions (indels). Neoantigen analysis showed that indels triggered a higher abundance of neoantigens both in quantity and quality compared to single nucleotide variants (SNVs) and gene fusions. By integrating peptide features pertinent to neoantigen presentation and T cell recognition, we developed two robust models of epitope immunogenicity that significantly enriched immunogenic neoepitopes. We validated 30 neoantigens through in vitro direct binding assays of predicted peptides to MHC proteins and confirmed the immunogenicity of 20 neoantigens using interferon-γ ELISpot and tetramer assays. Moreover, we demonstrated that patients with higher neoantigen loads, derived from driver mutations, exhibited poor clinical outcomes and an IFN-driven adaptive immune response, which was associated with immune suppression and tumor evasion. Through deconvolution of large-scale bulk transcriptomes, integration of single-cell RNA sequencing and multiparametric flow cytometry, we confirmed a strong association between neoantigen load and CD8+ T cell exhaustion. This study provides a comprehensive landscape of AML neoantigens derived from driver mutations, offering putative immunogenic targets and emphasizing the need for strategies to revitalize the immunosuppressive milieu.
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