Laboratory for Medical and Molecular Oncology, Oncology Research Center, Vrije Universiteit Brussel, Brussels, Belgium.
Neuro-Aging & Viro-Immunotherapy Research Group, Vrije Universiteit Brussel, Brussels, Belgium.
Cell Death Dis. 2023 Aug 21;14(8):536. doi: 10.1038/s41419-023-06063-w.
Acinar cell dedifferentiation is one of the most notable features of acute and chronic pancreatitis. It can also be the initial step that facilitates pancreatic cancer development. In the present study, we further decipher the precise mechanisms and regulation using primary human cells and murine experimental models. Our RNAseq analysis indicates that, in both species, early acinar cell dedifferentiation is accompanied by multiple pathways related to cell survival that are highly enriched, and where SLC7A11 (xCT) is transiently upregulated. xCT is the specific subunit of the cystine/glutamate antiporter system x. To decipher its role, gene silencing, pharmacological inhibition and a knock-out mouse model were used. Acinar cells with depleted or reduced xCT function show an increase in ferroptosis relating to lipid peroxidation. Lower glutathione levels and more lipid ROS accumulation could be rescued by the antioxidant N-acetylcysteine or the ferroptosis inhibitor ferrostatin-1. In caerulein-induced acute pancreatitis in mice, xCT also prevents lipid peroxidation in acinar cells. In conclusion, during stress, acinar cell fate seems to be poised for avoiding several forms of cell death. xCT specifically prevents acinar cell ferroptosis by fueling the glutathione pool and maintaining ROS balance. The data suggest that xCT offers a druggable tipping point to steer the acinar cell fate in stress conditions.
腺泡细胞去分化是急性和慢性胰腺炎的最显著特征之一。它也可能是促进胰腺癌发展的初始步骤。在本研究中,我们使用原代人细胞和小鼠实验模型进一步解析精确的机制和调控。我们的 RNAseq 分析表明,在这两个物种中,早期腺泡细胞去分化伴随着与细胞存活相关的多个途径的高度富集,其中 SLC7A11(xCT)瞬时上调。xCT 是胱氨酸/谷氨酸反向转运体系统 x 的特定亚基。为了解其作用,使用基因沉默、药物抑制和敲除小鼠模型。耗尽或减少 xCT 功能的腺泡细胞显示与脂质过氧化相关的铁死亡增加。抗氧化剂 N-乙酰半胱氨酸或铁死亡抑制剂 ferrostatin-1 可挽救谷胱甘肽水平降低和更多脂质 ROS 积累。在小鼠的蛙皮素诱导的急性胰腺炎中,xCT 还可防止腺泡细胞中的脂质过氧化。总之,在应激下,腺泡细胞命运似乎倾向于避免几种形式的细胞死亡。xCT 通过为谷胱甘肽池提供燃料并维持 ROS 平衡来特异性防止腺泡细胞铁死亡。数据表明,xCT 为应激条件下的腺泡细胞命运提供了一个可药物治疗的临界点。