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细胞外pH对胰腺导管腺癌细胞中凋亡性和非凋亡性TRAIL诱导信号传导的影响

Impact of Extracellular pH on Apoptotic and Non-Apoptotic TRAIL-Induced Signaling in Pancreatic Ductal Adenocarcinoma Cells.

作者信息

Hagelund Sofie, Trauzold Anna

机构信息

Institute for Experimental Cancer Research, University of Kiel, Kiel, Germany.

出版信息

Front Cell Dev Biol. 2022 Feb 24;10:768579. doi: 10.3389/fcell.2022.768579. eCollection 2022.

Abstract

Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) is an important mediator of tumor immune surveillance. In addition, its potential to kill cancer cells without harming healthy cells led to the development of TRAIL receptor agonists, which however did not show the desired effects in clinical trials. This is caused mainly by apoptosis resistance mechanisms operating in primary cancer cells. Meanwhile, it has been realized that in addition to cell death, TRAIL also induces non-apoptotic pro-inflammatory pathways that may enhance tumor malignancy. Due to its late detection and resistance to current therapeutic options, pancreatic ductal adenocarcinoma (PDAC) is still one of the deadliest types of cancer worldwide. A dysregulated pH microenvironment contributes to PDAC development, in which the cancer cells become highly dependent on to maintain their metabolism. The impact of extracellular pH (pH) on TRAIL-induced signaling in PDAC cells is poorly understood so far. To close this gap, we analyzed the effects of acidic and alkaline pH, both in short-term and long-term settings, on apoptotic and non-apoptotic TRAIL-induced signaling. We found that acidic and alkaline pH differentially impact TRAIL-induced responses, and in addition, the duration of the pH exposition also represents an important parameter. Thus, adaptation to acidic pH increases TRAIL sensitivity in two different PDAC cell lines, Colo357 and Panc1, one already TRAIL-sensitive and the other TRAIL-resistant, respectively. However, the latter became highly TRAIL-sensitive only by concomitant inhibition of Bcl-xL. None of these effects was observed under other pH conditions studied. Both TRAIL-induced non-apoptotic signaling pathways, as well as constitutively expressed anti-apoptotic proteins, were regulated by acidic pH. Whereas the non-apoptotic pathways were differently affected in Colo357 than in Panc1 cells, the impact on the anti-apoptotic protein levels was similar in both cell lines. In Panc1 cells, adaptation to either acidic or alkaline pH blocked the activation of the most of TRAIL-induced non-apoptotic pathways. Interestingly, under these conditions, significant downregulation of the plasma membrane levels of TRAIL-R1 and TRAIL-R2 was observed. Summing up, extracellular pH influences PDAC cells' response to TRAIL with acidic pH adaptation, showing the ability to strongly increase TRAIL sensitivity and in addition to inhibit TRAIL-induced pro-inflammatory signaling.

摘要

肿瘤坏死因子相关凋亡诱导配体(TRAIL)是肿瘤免疫监视的重要介质。此外,它具有在不损害健康细胞的情况下杀死癌细胞的潜力,这促使了TRAIL受体激动剂的研发,然而在临床试验中并未显示出预期效果。这主要是由原发性癌细胞中存在的凋亡抗性机制导致的。与此同时,人们已经认识到,除了诱导细胞死亡外,TRAIL还能诱导非凋亡性促炎途径,这可能会增强肿瘤的恶性程度。由于胰腺导管腺癌(PDAC)发现较晚且对当前治疗方案具有抗性,它仍然是全球最致命的癌症类型之一。pH微环境失调有助于PDAC的发展,其中癌细胞高度依赖其维持代谢。到目前为止,细胞外pH对PDAC细胞中TRAIL诱导信号的影响还知之甚少。为了填补这一空白,我们分析了短期和长期酸性及碱性pH对TRAIL诱导的凋亡和非凋亡信号的影响。我们发现酸性和碱性pH对TRAIL诱导的反应有不同影响,此外,pH暴露的持续时间也是一个重要参数。因此,适应酸性pH可增加两种不同的PDAC细胞系(Colo357和Panc1,分别对TRAIL敏感和耐药)对TRAIL的敏感性。然而,后者只有在同时抑制Bcl-xL时才对TRAIL高度敏感。在研究的其他pH条件下均未观察到这些效应。酸性pH调节TRAIL诱导的非凋亡信号通路以及组成性表达的抗凋亡蛋白。虽然在Colo357细胞和Panc1细胞中,非凋亡途径受到的影响不同,但对两种细胞系中抗凋亡蛋白水平的影响相似。在Panc1细胞中,适应酸性或碱性pH会阻断大多数TRAIL诱导的非凋亡途径的激活。有趣的是,在这些条件下,观察到TRAIL-R1和TRAIL-R2的质膜水平显著下调。总之,细胞外pH通过酸性pH适应影响PDAC细胞对TRAIL的反应,显示出强烈增加TRAIL敏感性以及抑制TRAIL诱导的促炎信号的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/55de/8907891/7ca49c82a09c/fcell-10-768579-g001.jpg

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