MSC-NPRA loop drives fatty acid oxidation to promote stemness and chemoresistance of gastric cancer

下调和上调 癌症研究 顺铂 间充质干细胞 基因敲除 流式细胞术 细胞凋亡 癌症 免疫印迹 化学 医学 化疗 生物 细胞生物学 内科学 免疫学 生物化学 基因
作者
Zetian Chen,Penghui Xu,Penghui Xu,Xinghong Wang,Ying Li,Yiwen Xia,Sen Wang,Yiwen Xia,Sen Wang,Zheng Li,Zekuan Xu,Zheng Li
出处
期刊:Cancer Letters [Elsevier BV]
卷期号:565: 216235-216235 被引量:32
标识
DOI:10.1016/j.canlet.2023.216235
摘要

Cisplatin (CDDP)-based chemotherapy is the preferred treatment strategy for advanced stage gastric cancer (GC) patients. Despite the efficacy of chemotherapy, the development of chemoresistance negatively affects the prognosis of GC and the underlying mechanism remains poorly understood. Accumulated evidence suggests that mesenchymal stem cells (MSCs) play important roles in drug resistance. The chemoresistance and stemness of GC cells were observed by colony formation, CCK-8, sphere formation and flow cytometry assays. Cell lines and animal models were utilized to investigate related functions. Western blot, quantitative real-time PCR (qRT-PCR) and co-immunoprecipitation were used to explore related pathways. The results showed that MSCs improved the stemness and chemoresistance of GC cells and accounted for the poor prognosis of GC. Natriuretic peptide receptor A (NPRA) was upregulated in GC cells cocultured with MSCs and knockdown of NPRA reversed the MSC-induced stemness and chemoresistance. At the same time, MSCs could be recruited to GC by NPRA, which formed a loop. In addition, NPRA facilitated stemness and chemoresistance through fatty acid oxidation (FAO). Mechanistically, NPRA protected Mfn2 against protein degradation and promoted its mitochondrial localization, which consequently improved FAO. Furthermore, inhibition of FAO with etomoxir (ETX) attenuated MSC-induced CDDP resistance in vivo. In conclusion, MSC-induced NPRA promoted stemness and chemoresistance by upregulating Mfn2 and improving FAO. These findings help us understand the role of NPRA in the prognosis and chemotherapy of GC. NPRA may be a promising target to overcome chemoresistance.
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