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Alterations in the Transcriptional Programs of Myeloma Cells and the Microenvironment during Extramedullary Progression Affect Proliferation and Immune Evasion

免疫系统 多发性骨髓瘤 细胞毒性T细胞 骨髓 生物 癌症研究 免疫学 转录组 抗原 肿瘤进展 肿瘤微环境 癌症 基因表达 基因 体外 生物化学 遗传学
作者
Daeun Ryu,Seok Jin Kim,Yourae Hong,Areum Jo,Nayoung Kim,Hee‐Jin Kim,Hae‐Ock Lee,Kihyun Kım,Woong‐Yang Park
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:26 (4): 935-944 被引量:60
标识
DOI:10.1158/1078-0432.ccr-19-0694
摘要

Abstract Purpose: In multiple myeloma, extramedullary progression is associated with treatment resistance and a high mortality rate. To understand the molecular mechanisms controlling the devastating progression of myeloma, we applied single-cell RNA-sequencing (RNA-seq) to myeloma in the bone marrow and myelomatous pleural effusions or ascites. Experimental Design: Bone marrow or extramedullary myeloma samples were collected from 15 patients and subjected to single-cell RNA-seq. The single-cell transcriptome data of malignant plasma cells and the surrounding immune microenvironment were analyzed. Results: Comparisons of single-cell transcriptomes revealed the systematic activation of proliferation, antigen presentation, proteasomes, glycolysis, and oxidative phosphorylation pathways in extramedullary myeloma cells. The myeloma cells expressed multiple combinations of growth factors and receptors, suggesting autonomous and pleiotropic growth potential at the single-cell level. Comparisons of the tumor microenvironment revealed the presence of cytotoxic T lymphocytes and natural killer (NK) cells in both the bone marrow and extramedullary ascites, demonstrating a gene-expression phenotype indicative of functional compromise. In parallel, isolated myeloma cells persistently expressed class I MHC molecules and upregulated inhibitory molecules for cytotoxic T and NK cells. Conclusions: These data suggest that myeloma cells are equipped with specialized immune evasion mechanisms in cytotoxic microenvironments. Taken together, single-cell transcriptome analysis revealed transcriptional programs associated with aggressive myeloma progression that support autonomous cell proliferation and immune evasion.
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