Department of Molecular and Cellular Oncology, The University of Texas MD Anderson Cancer Center, Houston, TX, 77030, USA.
The University of Texas Graduate School of Biomedical Sciences at Houston, Houston, TX, 77030, USA.
Nat Commun. 2018 May 15;9(1):1908. doi: 10.1038/s41467-018-04313-6.
Enriched PD-L1 expression in cancer stem-like cells (CSCs) contributes to CSC immune evasion. However, the mechanisms underlying PD-L1 enrichment in CSCs remain unclear. Here, we demonstrate that epithelial-mesenchymal transition (EMT) enriches PD-L1 in CSCs by the EMT/β-catenin/STT3/PD-L1 signaling axis, in which EMT transcriptionally induces N-glycosyltransferase STT3 through β-catenin, and subsequent STT3-dependent PD-L1 N-glycosylation stabilizes and upregulates PD-L1. The axis is also utilized by the general cancer cell population, but it has much more profound effect on CSCs as EMT induces more STT3 in CSCs than in non-CSCs. We further identify a non-canonical mesenchymal-epithelial transition (MET) activity of etoposide, which suppresses the EMT/β-catenin/STT3/PD-L1 axis through TOP2B degradation-dependent nuclear β-catenin reduction, leading to PD-L1 downregulation of CSCs and non-CSCs and sensitization of cancer cells to anti-Tim-3 therapy. Together, our results link MET to PD-L1 stabilization through glycosylation regulation and reveal it as a potential strategy to enhance cancer immunotherapy efficacy.
肿瘤干细胞(CSC)中富含 PD-L1 表达有助于 CSC 的免疫逃逸。然而,CSC 中 PD-L1 富集的机制尚不清楚。在这里,我们证明上皮-间充质转化(EMT)通过 EMT/β-catenin/STT3/PD-L1 信号轴在 CSC 中富集 PD-L1,其中 EMT 通过β-catenin转录诱导 N-糖基转移酶 STT3,随后 STT3 依赖性 PD-L1 N-糖基化稳定并上调 PD-L1。该轴也被普通癌细胞群利用,但它对 CSC 的影响更为深远,因为 EMT 在 CSC 中诱导的 STT3 比非 CSC 中多。我们进一步确定依托泊苷的非典型间充质-上皮转化(MET)活性,它通过 TOP2B 降解依赖性核β-catenin 减少抑制 EMT/β-catenin/STT3/PD-L1 轴,导致 CSC 和非 CSC 中 PD-L1 下调以及癌症对抗 Tim-3 治疗的敏感性增加。总之,我们的结果将 MET 通过糖基化调节与 PD-L1 稳定联系起来,并揭示其作为增强癌症免疫治疗效果的潜在策略。