Programmed death-ligand 1 signaling and expression are reversible by lycopene via PI3K/AKT and Raf/MEK/ERK pathways in tongue squamous cell carcinoma.

Mingjing Peng, Songqing Fan, Junjun Li, Xiao Zhou, Qianjin Liao, Faqing Tang, Wei Liu
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引用次数: 4

Abstract

Background: Cancer therapy targeting programmed death receptor-1 (PD-1 or CD279) or programmed death-ligand 1 (PD-L1 or CD274) gives hope to Tongue Squamous Cell Carcinoma (TSCC) treatment. However, the tumor-intrinsic mechanism of PD-L1 is not fully elucidated in TSCC. On the other hand, lycopene showed antitumor effects and chemotherapy/radiotherapy-enhancing effects by mechanisms closely correlated with PD-L1.

Purpose: We aimed to explore whether the mechanisms of PD-L1 signaling and regulation are reversible by lycopene treatment in TSCC.

Methods: We collected TSCC tissues and normal tissues for assessment of PD-L1 expression by immunohistochemical technique and western blotting. We measured the expression of PD-L1 in three TSCC cell lines and constructed cell lines with knockdown and overexpression of PD-L1. Then, we measured the proliferation by CCK-8 assay, migration and invasion by Transwell assay, and apoptosis by TUNEL assay in five groups with treatment of blank control, negative control with vector transfection, PD-L1 knockdown/overexpression, 4 μM lycopene, and combined 4 μM lycopene and PD-L1 knockdown/overexpression. We also systematically analyzed the PD-L1 constitutive signaling pathways and their effect EMT pathways. In order to bring out the mechanism underlying PI3K/AKT depressing Raf/MEK/ERK, we used PI3K inhibitor LY294002.

Results: We detected significant PD-L1 upregulation in biopsies by western blot and immunohistochemistry. Our study demonstrated that PD-L1 upregulation elevated IGF-1R to activate the PI3K/AKT pathway but inactivated the Raf/MEK/ERK pathway in TSCC cell line CAL27, while PD-L1 knockdown decreased IGF-1R to inactivate both PI3K/AKT and Raf/MEK/ERK pathways in cell line SCC9, to increase/decrease p-FOXOs and decrease/increase p-GSK-3β, producing further changes in EMT, proliferation, migration, invasion, and apoptosis. Lycopene reversed PD-L1 signaling and expression by mechanisms opposite to PD-L1 upregulation but similar to PD-L1 knockdown.

Conclusion: Taken together, this study firstly confirmed PD-L1 expression and signaling are reversible by lycopene via PI3K/AKT and Raf/MEK/ERK pathways in TSCC. Our study provides a sounder basis for comprehending PD-L1 signaling and expression and prevention and treatment of TSCC.

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在舌鳞癌中,程序性死亡配体1信号通路和表达是由番茄红素通过PI3K/AKT和Raf/MEK/ERK通路可逆的。
背景:针对程序性死亡受体-1 (PD-1或CD279)或程序性死亡配体1 (PD-L1或CD274)的癌症治疗为舌鳞癌(TSCC)的治疗带来了希望。然而,PD-L1在TSCC中的肿瘤内在机制尚未完全阐明。另一方面,番茄红素表现出抗肿瘤和化疗/放疗增强作用,其机制与PD-L1密切相关。目的:我们旨在探讨番茄红素在TSCC中PD-L1信号传导和调控是否可逆的机制。方法:采集TSCC组织和正常组织,采用免疫组化技术和免疫印迹法检测PD-L1的表达。我们检测了3种TSCC细胞系中PD-L1的表达,并构建了PD-L1敲低和过表达的细胞系。然后,采用CCK-8法、Transwell法、TUNEL法分别检测空白对照、载体转染阴性对照、PD-L1敲低/过表达、4 μM番茄红素、4 μM番茄红素与PD-L1敲低/过表达联合处理5组细胞的增殖、迁移和侵袭情况。我们还系统地分析了PD-L1组成信号通路及其对EMT通路的影响。为了揭示PI3K/AKT抑制Raf/MEK/ERK的机制,我们使用了PI3K抑制剂LY294002。结果:western blot和免疫组化检测活检组织中PD-L1明显上调。我们的研究表明,PD-L1上调IGF-1R激活PI3K/AKT通路,但在TSCC细胞系CAL27中使Raf/MEK/ERK通路失活,而PD-L1下调IGF-1R使SCC9细胞系PI3K/AKT和Raf/MEK/ERK通路失活,使p-FOXOs增加/减少,p-GSK-3β减少/增加,从而进一步改变EMT、增殖、迁移、侵袭和凋亡。番茄红素逆转PD-L1信号和表达的机制与PD-L1上调相反,但与PD-L1敲低相似。结论:本研究首次证实了番茄红素可通过PI3K/AKT和Raf/MEK/ERK通路逆转TSCC中PD-L1的表达和信号转导。本研究为进一步了解PD-L1的信号传导和表达以及TSCC的防治提供了更完善的基础。
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