生物
转录组
计算生物学
免疫疗法
癌症研究
NAD+激酶
基因表达谱
转录因子
背景(考古学)
免疫系统
体细胞
肿瘤异质性
肿瘤微环境
生物信息学
合成致死
蛋白质组学
转化研究
精密医学
功能多样性
靶向治疗
体内
基因沉默
神经内分泌肿瘤
蛋白质组
蛋白质基因组学
染色质
细胞
干细胞
作者
Fan Ge,Zhanyu Wang,Sufei Zheng,Guibin Wang,Chengming Liu,Xinfeng Wang,Qing Liu,Nan Sun,Jie He
出处
期刊:Gut
[BMJ]
日期:2026-08-26
卷期号:: gutjnl-2026
标识
DOI:10.1136/gutjnl-2026-339593
摘要
Background Neuroendocrine carcinomas (NECs) comprise a highly heterogeneous group of lethal malignancies arising from diverse anatomical sites. Objective We aimed to provide a functional blueprint for bridging the translational gap between fundamental discovery and clinical application in NEC. Design Building on our previously established cross-tissue transcriptional framework, we here performed comprehensive proteomic and phosphoproteomic profiling of 267 NECs spanning 26 anatomical sites. Result This integrated analysis recapitulated the five ANHPY transcriptional subtypes driven by master transcription factors (ASCL1, NEUROD1, HNF4A, POU2F3 and YAP1). These subtypes hijacked distinct lineage developmental programmes, which converged with specific RB1 status to dictate their molecular identities. Synergistic profiling of tissue and plasma proteomes, alongside cell secretomes, nominated subtype-specific diagnostic and therapeutic biomarkers. Specifically, we uncovered NAD + dependency as a metabolic vulnerability unique to subtype H, which is primarily distributed across gastroenteropancreatic NEC. Pharmacological inhibition of the NAD + salvage enzyme NAMPT achieved complete tumour regression in vivo by triggering synthetic lethality in the context of an inherent deficiency in NAD + biosynthesis. We also defined four tumour microenvironment (TME) subtypes that capture the extrinsic diversity of NEC. Notably, the ‘inflamed’ TME subtype was associated with superior immunotherapy responses, yielding an inflammatory signature that robustly stratified patients across diverse tissue origins. Conclusions This study delineated conserved molecular identities, multidimensional biomarkers, the immune landscape and subtype H-specific therapeutic strategies, paving the way for precision medicine in NEC.
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