PO.CH02.02 · 化学

血浆蛋白-转录组整合鉴定室管膜瘤中的分子特征和循环生物标志物

Plasma proteo-transcriptomic integration identifies molecular signatures and circulating biomarkers in ependymomas

海报缩略图:血浆蛋白-转录组整合鉴定室管膜瘤中的分子特征和循环生物标志物
编号 7648 展板 2 时间 4/22 09:00–12:00 区域 Section 38 主讲 Rafat Malik, MS
分会场 Multi-Omics, Systems Biology, and Biological Mass Spectrometry
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作者与单位 Authors & Affiliations

Rafat Malik1, Ritu Kulshreshtha2, Amandeep Kumar3, Vaishali Suri1, Mehar Chand Sharma1

1Neuropathology, Neurosciences Centre, All India Institute of Medical Sciences (AIIMS), New Delhi, India,2Department of Biochemical Engineering and Biotechnology, Indian Institute of Technology Delhi, New Delhi, India,3Neurosurgery, All India Institute of Medical Sciences (AIIMS), New Delhi, India

摘要 Abstract

中文摘要
背景:室管膜瘤(EPNs)是异质性的中枢神经系统(CNS)肿瘤,缺乏可靠的基于血液的生物标志物用于诊断、预后、治疗监测和复发检测。我们生成了首个儿童EPN的血浆蛋白-转录组图谱,以界定跨肿瘤亚型、分级、治疗状态和复发的循环特征。 方法:使用定量无标记非靶向LC-MS/MS分析来自33例EPN患者和7例对照的血浆,并与44例肿瘤总RNA测序和6例对照进行整合(差异表达基因(DEGs);|log₂FC| ≥ 1,FDR < 0.05)。通过GO/KEGG/Reactome富集、STRING蛋白相互作用网络和多组学一致性分析,对差异表达蛋白(|log₂FC| ≥ 0.58,FDR < 0.05)进行检查。生物标志物与Cyclin D1阳性、1q获得、ZFTA-RELA融合和CDKN2A缺失相关联。CancerMine用于提供已知致癌作用的背景信息。 结果:我们鉴定了270种失调的血浆蛋白,它们勾勒出ECM激活、凝血补体化、脂质代谢重编程和体液免疫抑制的系统性模式。FN1是最主要的标志物,在室管膜下瘤中升高26.36倍,在幕上肿瘤中升高7.66倍,在后颅窝肿瘤中升高6.37倍,治疗后急剧下降(1.64倍),反映了肿瘤动态变化。APOE(3.29倍)、APOD、APOH、APOA4和TMEM198(2.12倍)持续升高,并在治疗后下降。免疫抑制明显,JCHAIN降至0.32倍,免疫球蛋白(IGHD为0.07倍)和补体蛋白(C1QB、C4A/B)下调。IGHV3-35在治疗前升高(2.03倍)并在复发时升高,可作为双重生物标志物。LPA和SERPINF1为复发特异性,CD5L为幕上特异性。转录组学鉴定了1,286个DEGs,其中132个映射到血浆蛋白(57个上调,75个下调)。FN1、TMEM198和IGKC显示出RNA-蛋白一致性,而APOE、APOD和JCHAIN显示出分泌驱动的不一致性。STRING分析揭示了密集的ECM和凝血-脂质相互作用枢纽(PPI p < 1×10⁻¹⁶)。CancerMine验证了FN1、APOE/APOD、JCHAIN、C1QB和TTR在其他癌症中的致癌作用,这些在EPN中属新发现。生物标志物与侵袭性基因型强相关。 结论:该血浆蛋白-转录组图谱揭示了儿童EPN中一个稳健的系统性特征,其以ECM重塑、凝血主导、代谢重编程和免疫抑制为定义。关键生物标志物,如FN1、TMEM198、APOE/APOD、IGHV3-35、JCHAIN、LPA和SERPINF1,为非侵入性诊断、分层、治疗监测和早期复发检测提供了强大潜力,确立了血浆蛋白质组学作为一个变革性精准肿瘤学平台。
查看英文原文 English abstract
Background: Ependymomas (EPNs) are heterogeneous central nervous system (CNS) tumors that lack reliable blood-based biomarkers for diagnosis, prognosis, treatment monitoring, and recurrence detection. We generated the first plasma proteo-transcriptomic atlas of pediatric EPN to define circulating signatures across tumor subtypes, grades, treatment states and recurrence. Methods: Plasma from 33 EPN patients and seven controls was analyzed using quantitative label-free untargeted LC-MS/MS and integrated with 44 tumor Total RNA sequencing and six control (differentially expressed genes (DEGs); |log₂FC| ≥ 1, FDR < 0.05). Differentially expressed proteins (|log₂FC| ≥ 0.58, FDR < 0.05) were examined via GO/KEGG/Reactome enrichment, STRING protein-interaction networks, and multi-omics concordance analyses. Biomarkers correlated with Cyclin D1 positivity, 1q gain, ZFTA-RELA fusion, and CDKN2A loss. CancerMine contextualizes known oncogenic roles. Results: We identified 270 dysregulated plasma proteins that delineated a systemic pattern of ECM activation, coagulation complementation, lipid metabolic reprogramming, and humoral immune suppression. FN1 was the top marker, elevated 26.36-fold in subependymoma, 7.66-fold in supratentorial, and 6.37-fold in posterior fossa tumors, sharply decreasing post-treatment (1.64-fold), reflecting tumor dynamics. APOE (3.29-fold), APOD, APOH, APOA4, and TMEM198 (2.12-fold) were consistently elevated and decreased after therapy. Immune suppression was evident, with JCHAIN reduced to 0.32-fold, immunoglobulins (IGHD 0.07-fold), and complement proteins (C1QB, C4A/B) downregulated. IGHV3-35 was elevated pre-treatment (2.03-fold) and at recurrence, serving as a dual biomarker. LPA and SERPINF1 were recurrence-specific, and CD5L was supratentorial-specific. Transcriptomics identified 1,286 DEGs, of which 132 mapped to plasma proteins (57 upregulated, 75 downregulated). FN1, TMEM198, and IGKC showed RNA-protein concordance, whereas APOE, APOD, and JCHAIN showed secretion-driven discordance. STRING analysis revealed dense ECM and coagulation-lipid interaction hubs (PPI p < 1x10⁻¹⁶). CancerMine validated oncogenic roles of FN1, APOE/APOD, JCHAIN, C1QB, and TTR in other cancers, novel to EPN. Biomarkers were strongly correlated with aggressive genotypes. Conclusion: This plasma proteo-transcriptomic atlas revealed a robust systemic signature in pediatric EPN, defined by ECM remodeling, coagulation dominance, metabolic rewiring, and immune suppression. Key biomarkers, such as FN1, TMEM198, APOE/APOD, IGHV3-35, JCHAIN, LPA, and SERPINF1, offer strong potential for non-invasive diagnosis, stratification, therapy monitoring, and early recurrence detection, establishing plasma proteomics as a transformative precision oncology platform.
利益披露 Disclosure
R. Malik, None.. R. Kulshreshtha, None.. A. Kumar, None.. V. Suri, None.. M. C. Sharma, None.

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