PO.MCB06.04 · 分子与细胞生物学

NF-PanNETs的空间表观基因组图谱定义肿瘤进展及微环境生态位

Spatial epigenomic landscape of NF-PanNETs defines tumor progression and microenvironmental niches

海报缩略图:NF-PanNETs的空间表观基因组图谱定义肿瘤进展及微环境生态位
编号 3228 展板 10 时间 4/20 02:00–05:00 区域 Section 21 主讲 Yang Liu, PhD
分会场 Epigenomics
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作者与单位 Authors & Affiliations

Yang Liu, Dejiang Wang, Xiangjun Di, Jing Du

Yale University, New Haven, CT

摘要 Abstract

中文摘要
无功能性胰腺神经内分泌肿瘤(NF-PanNETs)表现出显著的临床和生物学异质性,然而塑造这种多样性的表观遗传机制和空间背景仍未得到充分阐明。为填补这一空白,我们将单核ATAC-seq(snATAC-seq)与空间ATAC-seq相结合,对不同分级的肿瘤进行了整合分析。snATAC-seq解析了不同肿瘤亚型、免疫细胞群和癌症相关成纤维细胞(CAFs)的染色质可及性图谱,揭示了支撑肿瘤进展并调节微环境相互作用的转录因子(TF)程序。空间ATAC-seq增添了关键的背景信息层,揭示了两大主要的肿瘤-基质生态位:一个是以E2F、MYC和mTORC1信号为特征的增殖生态位,另一个是富集Snail家族TF和KRAS通路激活的侵袭生态位。这些空间锚定的调控回路凸显了NF-PanNET细胞状态如何从内在表观遗传程序与局部组织环境之间的相互作用中涌现。总之,我们的研究建立了一个空间分辨的表观基因组框架,用于剖析NF-PanNET的异质性和演化,提供了新的生物标志物、调控轴和机制见解,对分子分层和精准治疗具有重要意义。
查看英文原文 English abstract
Non-functional pancreatic neuroendocrine tumors (NF-PanNETs) display substantial clinical and biological heterogeneity, yet the epigenetic mechanisms and spatial contexts that shape this diversity remain poorly defined. To address this gap, we performed an integrated analysis combining single-nucleus ATAC-seq (snATAC-seq) with spatial ATAC-seq across tumors of varying grades. snATAC-seq resolves chromatin accessibility landscapes for distinct tumor subtypes, immune populations, and cancer-associated fibroblasts (CAFs), uncovering transcription factor (TF) programs that underpin tumor progression and modulate microenvironmental interactions. Spatial ATAC-seq adds a critical layer of context, revealing two major tumor-stroma ecological niches: a proliferative niche characterized by E2F, MYC, and mTORC1 signaling, and an invasive niche enriched for Snail family TFs and KRAS pathway activation. These spatially anchored regulatory circuits highlight how NF-PanNET cell states emerge from the interplay between intrinsic epigenetic programs and local tissue environments. Collectively, our study establishes a spatially resolved epigenomic framework for dissecting NF-PanNET heterogeneity and evolution, providing new biomarkers, regulatory axes, and mechanistic insights with implications for molecular stratification and precision therapy.
利益披露 Disclosure
Y. Liu, None.. D. Wang, None.. X. Di, None.. J. Du, None.

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