生物
启动(农业)
黑色素瘤
细胞凋亡
免疫系统
癌症研究
逃避(道德)
基因
免疫疗法
免疫学
免疫检查点
细胞培养
后天抵抗
细胞
程序性细胞死亡
免疫耐受
抗药性
PD-L1
作者
Mingming Wu,Shiyue Yang,Zhentao Yang,Jianfeng Fan,Shirley H. Lomeli,Prashanthi Dharanipragada,Gatien Moriceau,Robert Damoiseaux,Mark C. Kelley,Carlos Prieto‐Granada,Alessio Giubellino,Mehdi Nosrati,Mohammed Kashani–Sabet,Kevin B. Kim,Douglas B. Johnson,Sixue Liu,Roger S. Lo
出处
期刊:Immunity
[Cell Press]
日期:2025-10-31
卷期号:58 (11): 2864-2877.e9
被引量:2
标识
DOI:10.1016/j.immuni.2025.10.001
摘要
Patients who initially respond to immune checkpoint inhibitors (ICIs) often relapse. Here, we studied how disease-progressive (DP) clinical melanomas evolve genomically to acquire ICI resistance. Compared to patient-matched pretreatment tumors, DP tumors recurrently amplified and/or deleted anti-apoptotic and/or pro-apoptotic genes, respectively. By chronic exposure to killer T cells or ICI therapy, we derived acquired-resistant (AR) human melanoma cell lines and murine melanoma tumors that recapitulate co-occurrent copy-number variants (CNVs) of apoptotic genes observed in DP melanomas. AR and DP subclones expanded shared, private, and, in some subclones, preexistent driver CNVs. Compared to isogenic parental cells, AR melanoma cells attenuated apoptotic priming but, with overexpression of deleted pro-apoptotic genes, recovered mitochondrial priming and sensitivity to killer T cells or ICIs. In mice, pharmacologically reducing the apoptotic threshold of ICI persisters prevented relapses. Thus, CNVs can drive the evolution of resistance to ICIs in melanoma, with tumor cell-intrinsic apoptotic threshold representing a target to curtail persister evolution.
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