PO.MCB08.05 · 分子与细胞生物学

全面的多组学分析揭示胰腺实性假乳头状肿瘤的分子异质性和发育特征

Comprehensive multi-omics profiling reveals molecular heterogeneity and developmental signatures in solid pseudopapillary neoplasm of the pancreas

编号 7261 展板 1 时间 4/22 09:00–12:00 区域 Section 21 主讲 Dong-Ju Shin, BS
分会场 Genomic Approaches to Define Tumor Biology and Clinical Stratification
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作者与单位 Authors & Affiliations

Dong-Ju Shin1, Jin Ho Choi2, Sang Hyub Lee2, In Rae Cho2, Kyung-Min Lee2, Ji Kon Ryu2, Woo Hyun Paik2, Jin-Ku Lee1

1Department of Anatomy and Cell Biology, Seoul National University College of Medicine, Seoul National University, Seoul, Korea, Republic of,2Department of Internal Medicine and Liver Research Institute, Seoul National University Hospital, Co, Seoul National University, Seoul, Korea, Republic of

摘要 Abstract

中文摘要
胰腺实性假乳头状肿瘤(SPN)是一种罕见的低度恶性肿瘤,主要影响年轻女性。尽管既往研究已应用组学方法(包括全外显子组测序、转录组学和DNA甲基化分析)来表征SPN,但其肿瘤发生和起源细胞仍不明确。除了目前被认为是唯一经典驱动因素的复发性CTNNB1热点突变外,SPN通常为二倍体,且表现出很少的复发性基因组改变。此外,由于其发病率低,既往的小队列研究不足以进行稳健的分子亚型分类或整合分析。 为全面表征SPN的分子图谱,我们对80例肿瘤进行了多组学分析,采用全基因组测序(WGS)、全转录组测序和全基因组酶法甲基测序(EM-seq)。基于跨转录组按中位数绝对偏差(MAD)排名的前1,000个基因进行的无监督层次聚类,鉴定出两种稳健的分子亚型:发育重编程型和免疫富集型:免疫富集亚型表现出免疫相关通路的显著激活,包括免疫球蛋白介导和适应性免疫反应,而发育重编程亚型则显示胚胎骨骼系统发育和形态发生特征的富集。此外,与正常胰腺组织相比,SPN肿瘤显示出全基因组高甲基化模式,凸显其独特的表观遗传状态。除基于表达的分层外,我们还系统检查了整个队列中的融合事件、全基因组体细胞突变、结构变异、线粒体基因组改变、numtogenesis(核线粒体DNA整合)、逆转座子活性和甲基化熵。值得注意的是,在61%的病例中检测到复发性TVP23C-CDRT4融合,提示SPN一个潜在的新型基因组标志。本研究代表了迄今为止对SPN规模最大的整合多组学分析,揭示了不同的转录组和表观基因组亚型、一个复发性融合事件以及显著的分子异质性。正在进行的整合分析旨在阐明这一罕见胰腺肿瘤的发育起源和致癌演变。
查看英文原文 English abstract
Solid pseudopapillary neoplasm (SPN) of the pancreas is a rare, low-grade malignant tumor that predominantly affects young women. Although previous studies have applied omics approaches, including whole-exome sequencing, transcriptomics, and DNA methylation profiling to characterize SPN, its tumorigenesis and cell of origin remain elusive. Apart from the recurrent CTNNB1 hotspot mutation, which is currently considered the only canonical driver, SPN is typically diploid and exhibits few recurrent genomic alterations. Moreover, because of its low incidence, previous small-cohort studies have been insufficient for robust molecular subtyping or integrative analysis. To comprehensively characterize the molecular landscape of SPN, we performed multi-omics analyses on 80 tumors using whole-genome sequencing (WGS), whole-transcriptome sequencing, and whole-genome enzymatic methyl-sequencing (EM-seq). Unsupervised hierarchical clustering based on the top 1,000 genes ranked by median absolute deviation (MAD) across transcriptomes identified two robust molecular subtypes: a developmentally reprogrammed type and an immune-enriched type: The immune-enriched subtype exhibited significant activation of immune-associated pathways, including immunoglobulin-mediated and adaptive immune responses, whereas the developmentally reprogrammed subtype showed enrichment of embryonic skeletal system development and morphogenesis signatures. Furthermore, SPN tumors displayed a genome-wide hypermethylated pattern compared with normal pancreatic tissues, highlighting their distinct epigenetic state. Beyond expression-based stratification, we systematically examined fusion events, genome-wide somatic mutations, structural variants, mitochondrial genome alterations, numtogenesis, retrotransposon activity, and methylation entropy across the cohort. Notably, a recurrent TVP23C-CDRT4 fusion was detected in 61% of cases, suggesting a potential novel genomic hallmark of SPN. This study represents the largest integrative multi-omics analysis of SPN to date, revealing distinct transcriptomic and epigenomic subtypes, a recurrent fusion event, and marked molecular heterogeneity. Ongoing integrative analyses aim to clarify the developmental origin and oncogenic evolution of this rare pancreatic neoplasm.
利益披露 Disclosure
D. Shin, None.. J. Choi, None.. S. Lee, None.. I. Cho, None.. K. Lee, None.. J. Ryu, None.. W. Paik, None.. J. Lee, None.

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