肿瘤细胞治疗研究
英文原题:PSMB9 Orchestrates Tumor Immune Landscape and Serves as a Potent Biomarker for Prognosis and T Cell-Based Immunotherapy Response.
PSMB9 Orchestrates Tumor Immune Landscape and Serves as a Potent Biomarker for Prognosis and T Cell-Based Immunotherapy Response.
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蛋白酶体β亚基9(PSMB9)是蛋白酶体β亚基家族成员,编码免疫蛋白酶体的关键1i组分。PSMB9在抗原加工和呈递中发挥重要作用,但其在整体协调肿瘤免疫图景及调节抗肿瘤免疫应答中的作用尚未全面研究。
本研究整合癌症基因组图谱、基因型-组织表达数据库、人类蛋白质图谱、肿瘤免疫治疗基因表达资源及其他多个数据库,考察PSMB9依赖具体情境发挥的功能。
我们还在多个免疫治疗队列中评估PSMB9的预测价值,并通过全基因组CRISPR/Cas9筛选、体外基因敲除细胞系和临床队列验证,研究其在CAR-T 治疗中的功能意义。
研究发现,PSMB9在多种癌症中广泛失调,多数恶性肿瘤中表达上调,并在特定情境下与病理分期较晚相关。PSMB9还普遍与肿瘤干性指标呈负相关。关键的是,PSMB9表达与抗肿瘤免疫密切相关:其与免疫通路活化(如IFN应答、细胞因子信号)、免疫调节及免疫检查点基因表达,以及几乎所有肿瘤类型中T细胞浸润增强均显著相关。
因此,PSMB9高表达可预测多个队列中免疫检查点抑制剂疗效较好,预测能力与既有特征相当。此外,CRISPR/Cas9筛选发现PSMB9缺失是CD19 CAR-T 治疗耐药的一种新机制;PSMB9缺陷肿瘤细胞在CAR-T 压力下具有生存优势,临床CAR-T 治疗结局也呈现支持这一发现的趋势。
本研究揭示PSMB9是泛癌范围内此前未被认识的肿瘤免疫图景关键调节因子,可协调TME中的重要免疫过程并作为有效预后标志物。
我们首次确立PSMB9是免疫检查点阻断和CAR-T 治疗的预后指标,凸显其兼具关键免疫调节因子和潜在生物标志物的双重作用,可用于指导多种人类癌症中的T细胞免疫治疗策略。
Proteasome subunit beta type-9 (PSMB9), a member of the proteasome beta subunit family, encodes the pivotal 1i component of the immunoproteasome. PSMB9 plays a crucial role in antigen processing and presentation; however, its comprehensive role in orchestrating a tumor-immune landscape and regulating the anti-tumor immune responses remains unexplored.
Here we investigated the context-dependent functions of PSMB9 by integrating multi-omics data from The Cancer Genome Atlas, Genotype-Tissue Expression database, Human Protein Atlas, Tumor Immunotherapy Gene Expression Resource, and multiple other databases.
Moreover, we explored the predictive value of PSMB9 in multiple immunotherapy cohorts and investigated its functional relevance in CAR-T therapy using genome-scale CRISPR/Cas9 screening, gene knockout cell line in vitro, and clinical cohort validation.
We found widespread dysregulation in PSMB9 across cancers, predominantly upregulated in most malignancies and associated with advanced pathological stages in specific contexts. PSMB9 was also broadly and negatively correlated with tumor stemness indices. Crucially, PSMB9 expression was robustly linked to anti-tumor immunity by being significantly correlated with immune-pathway activation (e.
g. , IFN response, cytokine signaling), immune regulatory and immune checkpoint gene expression, and enhanced infiltration of T cells across nearly all tumor types. Consequently, elevated PSMB9 predicted superior response to immune checkpoint inhibitors in multiple cohorts, showing comparable predictive power to established predictive signatures.
Furthermore, CRISPR/Cas9 screening identified PSMB9 loss as a novel mechanism of resistance to CD19 CAR T cell therapy, with PSMB9-deficient tumor cells exhibiting a survival advantage under CAR-T pressure, supported by trends in clinical CAR-T outcomes.
Our study uncovers PSMB9 as a previously unrecognized critical regulator of the tumor immune landscape in a pan-cancer scope, whose expression orchestrates key immune processes within the tumor microenvironment and serves as a potent biomarker for patient prognosis. Critically, we first established PSMB9 as a novel prognostic indicator for both checkpoint blockade and CAR-T cell therapies, highlighting its dual role as a crucial immune modulator and a promising biomarker for guiding T cell-based immunotherapy strategies across diverse human cancers.
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