Immune-tumor interaction dictates spatially directed evolution of esophageal squamous cell carcinoma

Yong Zhou, Shanlan Mo, Heyang Cui, Ruifang Sun, Weimin Zhang, Xiaofei Zhuang, Enwei Xu, Hongyi Li, Yikun Cheng, Yongsheng Meng, Meilin Liu, Ting Yan, Huijuan Liu, Ling Zhang, Bin Yang, Yanfeng Xi, Shubin Wang, Xiaolong Cheng, ShuaiCheng Li, Zhihua Liu, Qimin Zhan, Zheng Hu, Yongping Cui
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Abstract

Esophageal squamous cell carcinoma (ESCC) is a poor-prognostic cancer type with extensive intra- and inter-patient heterogeneity in both genomic variations and tumor microenvironment (TME). However, the patterns and drivers of spatial genomic and microenvironmental heterogeneity of ESCC remain largely unknown. Here, we generated a spatial multi-omic atlas by whole-exome, transcriptome, and methylome sequencing of 507 tumor samples from 103 patients. We identified a novel tumor suppressor PREX2, accounting for 22% ESCCs with frequent somatic mutations or hyper-methylation, which promoted migration and invasion of ESCC cells in vitro. Analysis of the tumor microenvironment and quantification of subclonal expansion indicated that ESCCs undergo spatially directed evolution, where subclones mostly originated from the tumor center but had a biased clonal expansion to the upper direction of the esophagus. Interestingly, we found upper regions of ESCCs often underwent stronger immunoediting with increased selective fitness, suggesting more stringent immune selection. In addition, distinct TMEs were associated with variable genomic and clinical outcomes. Of which, hot TME was associated with high immune evasion and subclonal heterogeneity. We also found that immunoediting, instead of CD8+ T cell abundance, acts as an independent prognostic factor of ESCCs. Importantly, we found significant heterogeneity in previously considered potential therapeutic targets, as well as BRCAness characteristics in a subset of patients, emphasizing the importance of focusing on heterogeneity in ESCC targeted therapy. Collectively, these findings provide novel insights into the mechanisms of the spatial evolution of ESCC and inform precision therapeutic strategies.
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免疫-肿瘤相互作用决定食管鳞状细胞癌的空间定向演化
食管鳞状细胞癌(ESCC)是一种预后不良的癌症类型,其基因组变异和肿瘤微环境(TME)在患者内部和患者之间具有广泛的异质性。然而,ESCC的空间基因组和微环境异质性的模式和驱动因素在很大程度上仍然未知。在这里,我们通过对 103 例患者的 507 个肿瘤样本进行全外显子组、转录组和甲基组测序,生成了空间多组学图谱。我们发现了一种新型肿瘤抑制因子 PREX2,它在 22% 的 ESCC 中频繁发生体细胞突变或高甲基化,能促进 ESCC 细胞在体外的迁移和侵袭。对肿瘤微环境和亚克隆扩增的量化分析表明,ESCC经历了空间定向演化,亚克隆大多起源于肿瘤中心,但有向食管上部方向扩增的倾向。有趣的是,我们发现ESCC的上部区域往往经历了更强的免疫编辑,选择性适存度增加,这表明免疫选择更为严格。此外,不同的TME与不同的基因组和临床结果相关。其中,热TME与高度免疫逃避和亚克隆异质性相关。我们还发现,免疫编辑而非CD8+ T细胞丰度是ESCC的独立预后因素。重要的是,我们发现以前认为的潜在治疗靶点存在显著的异质性,而且在一部分患者中还发现了 BRCAness 特征,这强调了在 ESCC 靶向治疗中关注异质性的重要性。总之,这些发现为了解 ESCC 的空间演变机制提供了新的视角,并为精准治疗策略提供了依据。
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