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
作者与单位 Authors & Affiliations
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.