School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, Zhejiang, China.
Center for Translational Cancer Research, Institute of Biosciences and Technology, Texas A&M University, Houston, Texas, USA.
Int J Cancer. 2022 May 1;150(9):1525-1536. doi: 10.1002/ijc.33922. Epub 2022 Jan 18.
The acquisition of ectopic type I fibroblast growth factor receptor (FGFR1) is a common feature of prostate cancer (PCa), the most frequently diagnostic cancer in men. However, how ectopic FGFR1 contributes to PCa progression is not well understood. In our study we showed that ablation of FGFR1 in DU145 human PCa cells changed the cell metabolite profile. Among the changes, the choline metabolism profile was the most significantly altered by FGFR1 ablation. Detailed characterization revealed that ablation of FGFR1 altered expression of multiple choline metabolism enzymes. Among the changes of FGFR1-regulated choline metabolic enzymes, downregulation of choline kinase α (CHKA) is the most prominent changes, which phosphorylates free choline to phosphocholine. Ablation of FGFR1 blunted the activity of choline to promote cell proliferation and survival. Furthermore, depletion of CHKA compromised FGF signaling activity in DU145 cells. We also first time demonstrated that FGFR1 formed complex with CHKA, suggesting that FGFR1 regulated CHKA at the posttranslational level. Together with the previous report that ectopic FGFR1 contributes to PCa progression and metastasis, our results here unravel a novel mechanism by which FGFR1 promotes PCa progression by dysregulating choline metabolism, and that the crosstalk between FGFR1-choline metabolism can be a potential target for managing PCa progression.
获得异位 I 型成纤维细胞生长因子受体 (FGFR1) 是前列腺癌 (PCa) 的一个常见特征,PCa 是男性最常见的诊断癌症。然而,异位 FGFR1 如何促进 PCa 的进展尚不清楚。在我们的研究中,我们表明,在 DU145 人前列腺癌细胞中消融 FGFR1 改变了细胞代谢物谱。在这些变化中,胆碱代谢谱受 FGFR1 消融的影响最大。详细特征分析表明,FGFR1 消融改变了多个胆碱代谢酶的表达。在 FGFR1 调节的胆碱代谢酶变化中,胆碱激酶 α (CHKA) 的下调最为明显,它将游离胆碱磷酸化为磷酸胆碱。FGFR1 消融削弱了胆碱促进细胞增殖和存活的活性。此外,CHKA 的耗竭削弱了 DU145 细胞中 FGF 信号的活性。我们还首次证明 FGFR1 与 CHKA 形成复合物,表明 FGFR1 在翻译后水平调节 CHKA。结合先前关于异位 FGFR1 促进 PCa 进展和转移的报告,我们的研究结果揭示了一种新的机制,即 FGFR1 通过调节胆碱代谢促进 PCa 进展,并且 FGFR1-胆碱代谢之间的串扰可能是管理 PCa 进展的一个潜在靶点。