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单细胞分析揭示恶性浆细胞中 PTPRG 驱动的干性及多发性骨髓瘤治疗失败的标志

英文原题:Single-cell profiling uncovers PTPRG-driven stemness in malignant plasma cells and signatures of treatment failure in multiple myeloma.

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Single-cell profiling uncovers PTPRG-driven stemness in malignant plasma cells and signatures of treatment failure in multiple myeloma.

PubMed 2025/09/18(内容时间) Front Immunol Q1 · IF 7(JCR 2025)

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研究概要

这一单细胞多组学解析揭示了增殖性、干细胞样 MalPlasma3 亚群,并确定 PTPRG 是 MM 耐药和不良预后的关键介质,提供了新的预后生物标志物和治疗靶点。

研究思路结论见上方概要

多发性骨髓瘤(MM)以广泛的瘤内异质性和骨髓微环境内复杂的相互作用为特征,然而治疗耐药的细胞和分子驱动因素仍不明确。蛋白酪氨酸磷酸酶受体γ(PTPRG)通过拮抗增殖和生存信号,已在多种恶性肿瘤中成为候选抑癌因子,但其在MM中的功能和预后相关性尚未确立。

我们分析了来自18个MM样本(10例对硼替佐米-美法仑-泼尼松最佳应答者[OR]和8例次优应答者[SOR])的103,171个单细胞转录组,以研究细胞类型组成、恶性浆细胞亚簇和肿瘤-微环境串扰。使用InferCNV区分恶性浆细胞,进一步重新聚类并与bulk预后表型相关联。进行了差异表达、通路富集、转录因子活性、拟时序轨迹和配体-受体相互作用分析。最后,使用bulk数据集(GSE9782、GSE2658、MMRF-CoMMpass)以及U266和NCI-H929细胞中的体外敲低实验来验证PTPRG的预后和功能作用。

共注释出11种主要细胞类型,其中浆细胞、T/NK细胞和CD14+单核细胞占主导;SOR样本表现出浆细胞比例扩增,而T/NK、CD14+单核细胞、前B细胞和HSPC群体减少。在35,944个恶性浆细胞中,定义了五个亚簇;其中一个亚簇(MalPlasma3)在SOR样本中富集,并包含93.1%与不良生存相关的细胞。MalPlasma3和“较差生存”细胞显示干性、E2F/MYC靶点和G2M检查点通路的激活,由转录因子E2F8、E2F7、FOXM1、E2F1和TIMELESS驱动。拟时序分析揭示向耐药表型的分叉分化,并伴随细胞周期和增殖模块的上调。在OR组中,NK细胞、效应T细胞和初始T细胞的细胞毒性特征增强,以及IGF1-IGF1R和IFNG-IFNGR信号传导,提示存在支持性微环境。与已知在实体瘤和血液系统癌症中作为肿瘤抑制因子的作用相反,我们的整合分析在MalPlasma3和不良生存细胞中上调的七个干性相关基因中鉴定出PTPRG,这与在MM细胞系中siRNA介导的PTPRG敲低后观察到的细胞活力降低和凋亡增加相呼应。

展开英文摘要原文

Multiple myeloma (MM) is characterized by extensive intratumoral heterogeneity and complex interactions within the bone marrow microenvironment, yet the cellular and molecular drivers of treatment resistance remain poorly defined. Protein tyrosine phosphatase receptor gamma (PTPRG) has emerged as a candidate tumor suppressor in various malignancies by antagonizing proliferative and survival signaling, but its functional and prognostic relevance in MM has not been established.

We analyzed 103,171 single-cell transcriptomes from 18 MM samples (10 optimal responders [OR] and 8 suboptimal responders [SOR] to bortezomib-melphalan-prednisone) to investigate cell-type composition, malignant plasma cell subclusters, and tumor-microenvironment crosstalk. InferCNV was used to distinguish malignant plasma cells, which were further reclustered and correlated with bulk prognostic phenotypes. Differential expression, pathway enrichment, transcription-factor activity, pseudotime trajectory, and ligand-receptor interaction analyses were performed. Finally, bulk datasets (GSE9782, GSE2658, MMRF-CoMMpass) and in vitro knockdown assays in U266 and NCI-H929 cells were used to validate the prognostic and functional role of PTPRG.

Eleven major cell types were annotated, with plasma cells, T/NK cells, and CD14 + monocytes predominating; SOR samples exhibited an expanded plasma-cell fraction and reduced T/NK, CD14 + monocyte, pre-B, and HSPC populations. Among 35,944 malignant plasma cells, five subclusters were defined; one subcluster (MalPlasma3) was enriched in SOR samples and harbored 93.1% of cells associated with poor survival. MalPlasma3 and "worse-survival" cells showed activation of stemness, E2F/MYC targets, and G2M checkpoint pathways, driven by transcription factors E2F8, E2F7, FOXM1, E2F1, and TIMELESS. Pseudotime analysis revealed a bifurcating differentiation toward a resistant phenotype, accompanied by upregulation of cell-cycle and proliferation modules. In the OR group, enhanced cytotoxic features in NK, effector, and naïve T cells, along with IGF1-IGF1R and IFNG-IFNGR signaling, suggested a supportive microenvironment. In contrast to the known role as a tumor suppressor in solid and hematologic cancers, our integrative analyses identified PTPRG among seven stemness-related genes upregulated in MalPlasma3 and poor-survival cells, which was echoed in the observed reduced cell viability and increased apoptosis in MM cell lines following siRNA-mediated PTPRG knockdown.

This single-cell multi-omic dissection implicates a proliferative, stem-like MalPlasma3 subcluster and identified PTPRG as a key mediator of drug resistance and poor outcome in MM, offering novel prognostic biomarkers and therapeutic targets.

论文信息

作者
Tan J、Zhong J、He Y、Xu Y、Chen C、Xiong D
单位
Department of Hematology, The Eighth Affiliated Hospital, Southern Medical University (The First People's Hospital of Shunde, Foshan), Foshan, China.China
期刊
Frontiers in immunology2025
原文标识
PubMed 41050668 · DOI 10.3389/fimmu.2025.1658028