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CD84 is a regulator of the immunosuppressive microenvironment in multiple myeloma
Hadas Lewinsky, … , Steven Rosen, Idit Shachar
Hadas Lewinsky, … , Steven Rosen, Idit Shachar
Published January 19, 2021
Citation Information: JCI Insight. 2021;6(4):e141683. https://doi.org/10.1172/jci.insight.141683.
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Research Article Hematology Oncology

CD84 is a regulator of the immunosuppressive microenvironment in multiple myeloma

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Abstract

Multiple myeloma (MM) is characterized by an accumulation of malignant plasma cells (PCs) within the BM. The BM microenvironment supports survival of the malignant cells and is composed of cellular fractions that foster myeloma development and progression by suppression of the immune response. Despite major progress in understanding the biology and pathophysiology of MM, this disease is still incurable and requires aggressive treatment with significant side effects. CD84 is a self-binding immunoreceptor belonging to the signaling lymphocyte activation molecule (SLAM) family. Previously, we showed that CD84 bridges between chronic lymphocytic leukemia cells and their microenvironment, and it regulates T cell function. In the current study, we investigated the role of CD84 in MM. Our results show that MM cells express low levels of CD84. However, these cells secrete the cytokine macrophage migration inhibitory factor (MIF), which induces CD84 expression on cells in their microenvironment. Its activation leads to an elevation of expression of genes regulating differentiation to monocytic/granulocytic–myeloid-derived suppressor cells (M-MDSCs and G-MDSCs, respectively) and upregulation of PD-L1 expression on MDSCs, which together suppress T cell function. Downregulation of CD84 or its blocking reduce MDSC accumulation, resulting in elevated T cell activity and reduced tumor load. Our data suggest that CD84 might serve as a novel therapeutic target in MM.

Authors

Hadas Lewinsky, Emine G. Gunes, Keren David, Lihi Radomir, Matthias P. Kramer, Bianca Pellegrino, Michal Perpinial, Jing Chen, Ting-fang He, Anthony G. Mansour, Kun-Yu Teng, Supriyo Bhattacharya, Enrico Caserta, Estelle Troadec, Peter Lee, Mingye Feng, Jonathan Keats, Amrita Krishnan, Michael Rosenzweig, Jianhua Yu, Michael A. Caligiuri, Yosef Cohen, Olga Shevetz, Shirly Becker-Herman, Flavia Pichiorri, Steven Rosen, Idit Shachar

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Figure 2

CD84 is expressed on MDSCs in the MM microenvironment.

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CD84 is expressed on MDSCs in the MM microenvironment.
(A) Human BM-deri...
(A) Human BM-derived (CD14+, CD11B+, CD15–, HLA-DR–) M-MDSCs. A representative plot, showing percentages CD84+ MM derived M-MDSCs, is shown (n = 3–8). (B) Human BM derived (CD15+, CD11B+, CD14–, HLA-DR–) G-MDSCs. A representative histogram, and plot showing percent G-MDSCs expressing CD84, is shown (n = 3–8). (C) t-SNE plots identifying CD14+ cells, M-MDSC, CD15+ cells, G-MDSCs, MM cells, and CD84 expression. Representative t-SNE plots based on CD14+, CD15+, M-MDSC, G-MDSC, MM, and CD84+ cells from the MM patient BM samples (t-SNE was run with perplexity of 30 with 1000 iterations; 800,000 live cells were randomly selected). The cells are colored according to the expression level of CD14+/CD15– for CD14; CD14+/CD15–/CD11b+/HLA-DRlo/– for M-MDSC; CD15+/CD14– for CD15; CD15+/CD14–/CD11b+/HLA-DRlo/– for G-MDSC; and CD138+/CD38+ for MM cells and CD84 markers. *P < 0.05, **P < 0.01, ***P < 0.001, ****P < 0.0001, with either unpaired 2-tailed t test for pairwise comparisons or 1-way ANOVA with Holm-Sidak multiple corrections test for 3 groups.

Copyright © 2021 American Society for Clinical Investigation
ISSN 2379-3708

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