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◆ NPJ precision oncology2026-07-29

Integrative pan-cancer and COAD-focused multi-omics analysis of non-histone acetylation substrate-related transcriptional landscapes.

Jiahao Zhu, Jiyun Shi, Peipei Shen, Rui Lou, Bin Zhang, Erwen Bao, Danqi Qian, Shengjun Ji, Ke Gu, Yong Mao

原始摘要(英文原文)· Original abstract
Non-histone acetylation regulates protein stability, transcription, and immune signaling, yet its substrate-specific roles in colon adenocarcinoma (COAD) remain unclear. We performed an integrative multi-omics analysis to characterize acetylation substrate-related transcriptional signatures and their clinical relevance. Expression patterns and prognostic impacts of 33 acetylation-related enzymes were evaluated pan-cancer, and substrate-related networks were computationally inferred. A 15-gene substrate expression-based acetylation substrate-related imbalance score (AIScore) stratified COAD patients into prognostically distinct groups. Single-cell RNA sequencing and spatial transcriptomics revealed AIScore-high malignant cells preferentially interacting with SPP1-positive macrophages, forming immunosuppressive niches with reduced predicted immunotherapy response. Exploratory deep learning-based pathomics of whole-slide images, including ResNet-50 feature extraction, PCA, clustering, and Grad-CAM visualization, highlighted AIScore-associated morphologic hotspots at tumor-immune interfaces. These findings indicate that non-histone acetylation substrate-related transcriptional programs in COAD are linked to poor prognosis and spatial immune heterogeneity, while pathomics provides supportive morphology-linked evidence requiring further validation.
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Integrative pan-cancer and COAD-focused multi-omics analysis of non-histone acetylation substrate-related transcriptional landscapes. — 科研速览 Science Skim