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Tumor-Intrinsic PD-L1 Signaling in Cancer Initiation Development and Treatment: Beyond Immune Evasion

机译:肿瘤内在性PD-L1信号在癌症的发生发展和治疗中的作用:超越免疫逃逸

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摘要

Although the role of PD-L1 in suppressing the anti-tumor immune response is extensively documented, recent discoveries indicate a distinct tumor-intrinsic role for PD-L1 in modulating epithelial-to-mesenchymal transition (EMT), cancer stem cell (CSC)-like phenotype, metastasis and resistance to therapy. In this review, we will focus on the newly discovered functions of PD-L1 in the regulation of cancer development, describe underlying molecular mechanisms responsible for PD-L1 upregulation and discuss current insights into novel components of PD-L1 signaling. Furthermore, we summarize our current understanding of the link between PD-L1 signaling and the EMT program as well as the CSC state. Tumor cell-intrinsic PD-L1 clearly contributes to cancer stemness, EMT, tumor invasion and chemoresistance in multiple tumor types. Conversely, activation of OCT4 signaling and upregulation of EMT inducer ZEB1 induce PD-L1 expression in cancer cells, thereby suggesting a possible immune evasion mechanism employed by cancer stem cells during metastasis. Our meta-analysis demonstrated that PD-L1 is co-amplified along with MYC, SOX2, N-cadherin and SNAI1 in the TCGA endometrial and ovarian cancer datasets. Further identification of immune-independent PD-L1 functions and characterization of crucial signaling events upstream or downstream of PD-L1 in diverse cancer types and specific cancer subtypes, would provide additional targets and new therapeutic approaches.
机译:尽管PD-L1在抑制抗肿瘤免疫反应中的作用已有大量文献报道,但最近的发现表明PD-L1在调节上皮到间质转化(EMT),癌症干细胞(CSC)方面具有独特的肿瘤内在作用样表型,转移和耐药性。在这篇综述中,我们将专注于PD-L1在调节癌症发展中的新发现功能,描述负责PD-L1上调的潜在分子机制,并讨论对PD-L1信号传导新成分的最新见解。此外,我们总结了我们目前对PD-L1信号和EMT程序之间的链接以及CSC状态的理解。肿瘤细胞内源性PD-L1明显促进多种类型肿瘤的癌干性,EMT,肿瘤浸润和化学抗性。相反,OCT4信号的激活和EMT诱导物ZEB1的上调诱导了癌细胞中PD-L1的表达,从而暗示了癌症干细胞在转移过程中可能使用的免疫逃逸机制。我们的荟萃分析表明,在TCGA子宫内膜癌和卵巢癌数据集中,PD-L1与MYC,SOX2,N-钙粘蛋白和SNAI1共同扩增。进一步鉴定免疫独立的PD-L1功能并表征各种癌症类型和特定癌症亚型中PD-L1上游或下游的关键信号转导事件,将提供其他靶点和新的治疗方法。

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