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Lysosomal acid lipase, CSF1R, and PD-L1 determine functions of CD11c+ myeloid-derived suppressor cells
Ting Zhao, Sheng Liu, Xinchun Ding, Erica M. Johnson, Nasser H. Hanna, Kanhaiya Singh, Chandan K. Sen, Jun Wan, Hong Du, Cong Yan
Ting Zhao, Sheng Liu, Xinchun Ding, Erica M. Johnson, Nasser H. Hanna, Kanhaiya Singh, Chandan K. Sen, Jun Wan, Hong Du, Cong Yan
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Research Article Immunology

Lysosomal acid lipase, CSF1R, and PD-L1 determine functions of CD11c+ myeloid-derived suppressor cells

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Abstract

Lysosomal acid lipase (LAL) is a key enzyme in the metabolic pathway of neutral lipids. In the blood of LAL-deficient (Lal–/–) mice, increased CD11c+ cells were accompanied by upregulated programmed cell death ligand 1 (PD-L1) expression. Single-cell RNA sequencing of Lal–/– CD11c+ cells identified 2 distinctive clusters with a major metabolic shift toward glucose utilization and reactive oxygen species overproduction. Pharmacologically blocking pyruvate dehydrogenase in glycolysis not only reduced CD11c+ cells and their PD-L1 expression but also reversed their capabilities of T cell suppression and tumor growth stimulation. Colony-stimulating factor 1 receptor (CSF1R) played an essential role in controlling Lal–/– CD11c+ cell homeostasis and function and PD-L1 expression. Pharmacological inhibition of LAL activity increased CD11c, PD-L1, and CSF1R levels in both normal murine myeloid cells and human blood cells. Tumor-bearing mice and human patients with non–small cell lung cancer also showed CD11c+ cell expansion with PD-L1 and CSF1R upregulation and immunosuppression. There were positive correlations among CD11c, PD-L1, and CSF1R expression and negative correlations with LAL expression in patients with lung cancer or melanoma using The Cancer Genome Atlas database and patient samples. Therefore, CD11c+ cells switched their functions to immune suppression and tumor growth stimulation through CSF1R/PD-L1 upregulation and metabolic reprogramming.

Authors

Ting Zhao, Sheng Liu, Xinchun Ding, Erica M. Johnson, Nasser H. Hanna, Kanhaiya Singh, Chandan K. Sen, Jun Wan, Hong Du, Cong Yan

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Figure 7

Expression of PD-L1 and CSF1R in CD11c+ cells of tumor-bearing mice and NSCLC patients.

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Expression of PD-L1 and CSF1R in CD11c+ cells of tumor-bearing mice and ...
(A and B) Percentages of CD11c+ blood cells (A) and percentages of PD-L1+ cells in CD11c+ blood cells (B) of B16 melanoma or LLC cell–injected versus PBS-injected FVB/N or C57BL/6 mice. (C and D) Percentages of CSF1R+ cells (C) and MFI of PDH expression (D) in CD11c+ blood cells of B16 melanoma cell–injected versus PBS-injected FVB/N mice. (E) CD11c+ blood cells were isolated from B16 melanoma cell–injected or PBS-injected FVB/N mice, and cocultured with CFSE-labeled Lal+/+ CD4+ T cells (at 1:1 ratio). (F–H) Pearson correlation analysis of expressions of CD11C and CD274, CD11C and CSF1R, CD274 and CSF1R, IFNG and CD11C, IFNG and CD274, IFNG and CSF1R in LUAD (F), LUSC (G), and SKCM (H). (I) Statistical analysis of percentages of CD11c+, PD-L1+, and CSF1R+ cells in blood of patients with NSCLC versus healthy individuals. (J) Percentages of PD-L1+ and CSF1R+ cells in blood CD11c+ cells of patients with NSCLC versus healthy individuals. (K) MFI of PDH expression in blood CD11c+ cells of patients with NSCLC versus healthy individuals. (L) Expression of the gene LIPA (LAL) in violin plots from patients with BRCA, KICH, LUAD, LUSC, PAAD, SKCM, or UCEC versus healthy individuals. (M) MFI of LAL in whole blood, CD11c+, PD-L1+, and CSF1R+ cells of patients with NSCLC versus healthy individuals. Data are expressed as mean ± SD. Experiments were independently repeated, n = 7–8 for A–D, n = 6 for E, n = 585 for F, n = 550 for G, n = 472 for H, n = 18–20 for I and J, n = 5–8 for K and M. *P < 0.05, **P < 0.01, 1-way ANOVA for A and B, unpaired Student’s t test for C–E, I–K, and M.

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