Circadian Regulator CLOCK Drives Immunosuppression in Glioblastoma

被引:75
作者
Xuan, Wenjing [1 ]
Hsu, Wen-Hao [2 ]
Khan, Fatima [1 ]
Dunterman, Madeline [1 ]
Pang, Lizhi [1 ]
Wainwright, Derek A. [1 ]
Ahmed, Atique U. [1 ]
Heimberger, Amy B. [1 ]
Lesniak, Maciej S. [1 ]
Chen, Peiwen [1 ]
机构
[1] Northwestern Univ, Feinberg Sch Med, Lou & Jean Malnati Brain Tumor Inst, Robert H Lurie Comprehens Canc Ctr,Dept Neurol Su, Chicago, IL USA
[2] Univ Texas MD Anderson Canc Ctr, Dept Canc Biol, Houston, TX USA
关键词
CANCER; MICROGLIA; GLIOMA; MACROPHAGES; CELL; ACTIVATION; TEMOZOLOMIDE; CONTRIBUTES; PROGRESSION; LANDSCAPE;
D O I
10.1158/2326-6066.CIR-21-0559
中图分类号
R73 [肿瘤学];
学科分类号
100214 ;
摘要
The symbiotic interactions between cancer stem cells and the tumor microenvironment (TME) are critical for tumor progression. However, the molecular mechanism underlying this symbiosis in glioblastoma (GBM) remains enigmatic. Here, we show that circadian locomotor output cycles kaput (CLOCK) and its heterodimeric partner brain and muscle ARNT-like 1 (BMAL1) in glioma stem cells (GSC) drive immunosuppression in GBM. Integrated analyses of the data from transcriptome profiling, single-cell RNA sequencing, and TCGA datasets, coupled with functional studies, identified legumain (LGMN) as a direct transcriptional target of the CLOCK–BMAL1 complex in GSCs. Moreover, CLOCK-directed olfactomedin-like 3 (OLFML3) upregulates LGMN in GSCs via hypoxia-inducible factor 1-alpha (HIF1a) signaling. Consequently, LGMN promotes microglial infiltration into the GBM TME via upregulating CD162 and polarizes infiltrating microglia toward an immune-suppressive phenotype. In GBM mouse models, inhibition of the CLOCK–OLFML3–HIF1a–LGMN–CD162 axis reduces intratumoral immune-suppressive microglia, increases CD8þ T-cell infiltration, activation, and cytotoxicity, and synergizes with anti–programmed cell death protein 1 (anti–PD-1 therapy). In human GBM, the CLOCK-regulated LGMN signaling correlates positively with microglial abundance and poor prognosis. Together, these findings uncover the CLOCK–OLFML3–HIF1a–LGMN axis as a molecular switch that controls microglial biology and immunosuppression, thus revealing potential new therapeutic targets for patients with GBM. © 2022 American Association for Cancer Research
引用
收藏
页码:770 / 784
页数:15
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