PO.BCS01.04 · 生物信息与计算

一种具有 CNS/眼部趋向性的小鼠 T 细胞淋巴瘤中致瘤性、免疫逃逸和多药耐药的蛋白质组学特征

Proteomic signatures of tumorigenicity, immune evasion, and multidrug resistance in a murine T-cell lymphoma with CNS/ocular tropism

海报缩略图:一种具有 CNS/眼部趋向性的小鼠 T 细胞淋巴瘤中致瘤性、免疫逃逸和多药耐药的蛋白质组学特征
编号 4128 展板 8 时间 4/21 09:00–12:00 区域 Section 2 主讲 Ori Braitbard, PhD
分会场 Application of Bioinformatics to Cancer Biology 4
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作者与单位 Authors & Affiliations

Ori Braitbard1, Jacob Hochman2

1The Department of Bioinformatics, Jerusalem College of Technology, Jerusalem, Israel,2Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem, Israel

摘要 Abstract

中文摘要
背景:S49 T 细胞淋巴瘤及其衍生亚系提供了一个强有力的模型,用于解析 T 细胞淋巴瘤如何获得致瘤性、逃避免疫监视、发展多药耐药,并播散至 CNS 和眼部。恶性悬浮生长细胞系 T-25 与三种衍生系形成对比:一种具免疫原性、非致瘤性的贴壁 T-25-Adh 细胞系,一种致瘤性回复突变体 Rev-2-T-6,以及一种过表达 MDR1 的 HU-1 细胞系(源自 T-25-Adh),后者具有耐药性但在成体中非致瘤。Rev-2-T-6 和 HU-1 细胞系能够在新生个体中发生 CNS/眼部转移。 方法:我们使用无标记定量蛋白质组学来界定支撑这些不同表型的程序。对 T-25、T-25-Adh、Rev-2-T-6 和 HU-1 细胞的生物学三重复样本进行高分辨率 LC-MS/MS 分析和比较,并使用 MaxQuant LFQ 对蛋白质进行定量。我们在所有细胞系中定量了 3,500 种蛋白质,重现性高。 结果:无监督聚类和 PCA 显示三重复样本紧密聚类,T-25 与其他变异系明显分离;HU-1 和 T-25-Adh 聚在一起,而 Rev-2-T-6 处于中间位置,与其部分回复突变体表型一致。与 T-25 细胞相比,HU-1、Rev-2-T-6 和 T-25-Adh 分别显示 17、19 和 29 种显著调控的蛋白质。HU-1 富集 cAMP 相关、核膜和 RNA 加工蛋白,并伴有显著的 MDR1 过表达。它表现出 MHC-I 重链和核糖体成分的减少。这与多药耐药但非致瘤背景下的免疫逃逸和线粒体功能改变相一致。Rev-2-T-6 上调 cAMP 和 DNA 复制因子,下调 MHC-I 和线粒体酶,支持增殖性、向糖酵解转变的“回复突变体”状态。T-25-Adh 表现出细胞周期和氧化磷酸化蛋白的下调,界定了一种贴壁、具免疫原性、非致瘤的程序。 结论:本研究呈现的 S49 衍生淋巴瘤系蛋白质组图谱揭示了恶性、免疫逃逸和耐药的共有及谱系特异性特征。抗原呈递和线粒体代谢的缺失,连同 cAMP 和增殖程序的激活,是致瘤细胞的特征;而具免疫原性的贴壁表型则与增殖减少、代谢下调以及黏附/免疫通路增强相关。HU-1 中 MDR1 的上调使耐药性与致瘤性解偶联,同时保留了 CNS/眼部趋向性。这些数据提名抗原加工机器、cAMP 信号、线粒体代谢和 ABC 转运体作为 CNS 趋向性淋巴瘤的生物标志物和治疗靶点,并为与人类 T 细胞恶性肿瘤的比较分析提供了框架。
查看英文原文 English abstract
Background: The S49 T-cell lymphoma and its derivative sublines provide a powerful model to dissect how T cell lymphomas acquire tumorigenicity, evade immune surveillance, develop multidrug resistance, and disseminate to the CNS and eyes. The malignant suspension growing line T-25 contrasts with three derivatives: an immunogenic non-tumorigenic adherent T-25-Adh cell line, a tumorigenic revertant Rev-2-T-6, and a MDR1 overexpressing HU-1 cell line, which is drug-resistant yet non-tumorigenic in adults (derived from T-25-Adh). Rev-2-T-6 and HU-1 cell lines are capable of CNS/ocular metastasis in neonates. Methods: We used label-free quantitative proteomics to define programs that underlie these divergent phenotypes. Biological triplicates of T-25, T-25-Adh, Rev-2-T-6, and HU-1 cells were analyzed and compared by high-resolution LC-MS/MS, and proteins were quantified using MaxQuant LFQ. We quantified 3,500 proteins across all lines with high reproducibility. Results: Unsupervised clustering and PCA showed tight triplicate clustering, with T-25 clearly separated from the other variants; HU-1 and T-25-Adh clustered together, and Rev-2-T-6 occupied an intermediate position, consistent with its partial revertant phenotype. Compared to T-25 cells, HU-1, Rev-2-T-6, and T-25-Adh showed 17, 19, and 29 significantly regulated proteins, respectively. HU-1 was enriched for cAMP-related, nuclear envelope, and RNA-processing proteins, together with marked MDR1 overexpression. It showed reduced MHC-I heavy chains and ribosomal components. This is consistent with immune evasion and altered mitochondrial function in a multidrug-resistant yet non-tumorigenic background. Rev-2-T-6 up-regulated cAMP and DNA-replication factors down-regulating MHC-I and mitochondrial enzymes, supporting proliferative, glycolysis-shifted “revertant” state. T-25-Adh displayed down-regulation of cell-cycle and oxidative phosphorylation proteins, defining an adherent, immunogenic, non-tumorigenic program. Conclusions: The present proteomic atlas of S49-derived lymphoma lines reveals shared and lineage-specific signatures of malignancy, immune escape, and drug resistance. Loss of antigen presentation and mitochondrial metabolism, together with activation of cAMP and proliferative programs, characterizes tumorigenic cells, whereas the immunogenic adherent phenotype is associated with reduced proliferation, metabolic down-shifting, and enhanced adhesion/immune pathways. MDR1 up-regulation in HU-1 decouples drug resistance from tumorigenicity while preserving CNS/ocular tropism. These data nominate antigen-processing machinery, cAMP signaling, mitochondrial metabolism, and ABC transporters as biomarkers and therapeutic targets in CNS-tropic lymphomas and provide a framework for comparative analyses with human T-cell malignancies.
利益披露 Disclosure
O. Braitbard, None.. J. Hochman, None.

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