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选择性抑制胆碱激酶可同时减弱 MAPK 和 PI3K/AKT 信号通路。

Selective inhibition of choline kinase simultaneously attenuates MAPK and PI3K/AKT signaling.

机构信息

Department of Biochemistry and Molecular Biology, James Graham Brown Cancer Center (Molecular Targets Program), University of Louisville, Louisville, KY 40202, USA.

出版信息

Oncogene. 2010 Jan 7;29(1):139-49. doi: 10.1038/onc.2009.317. Epub 2009 Oct 26.

Abstract

Choline is an essential anabolic substrate for the synthesis of phospholipids. Choline kinase phosphorylates choline to phosphocholine that serves as a precursor for the production of phosphatidylcholine, the major phospholipid constituent of membranes and substrate for the synthesis of lipid signaling molecules. Nuclear magnetic resonance (NMR)-based metabolomic studies of human tumors have identified a marked increase in the intracellular concentration of phosphocholine relative to normal tissues. We postulated that the observed intracellular pooling of phosphocholine may be required to sustain the production of the pleiotropic lipid second messenger, phosphatidic acid. Phosphatidic acid is generated from the cleavage of phosphatidylcholine by phospholipase D2 and is a key activator of the mitogen-activated protein kinase (MAPK) and phosphatidylinositol 3-kinase (PI3K)/AKT survival signaling pathways. In this study we show that the steady-state concentration of phosphocholine is increased by the ectopic expression of oncogenic H-Ras(V12) in immortalized human bronchial epithelial cells. We then find that small interfering RNA (siRNA) silencing of choline kinase expression in transformed HeLa cells completely abrogates the high concentration of phosphocholine, which in turn decreases phosphatidylcholine, phosphatidic acid and signaling through the MAPK and PI3K/AKT pathways. This simultaneous reduction in survival signaling markedly decreases the anchorage-independent survival of HeLa cells in soft agar and in athymic mice. Last, we confirm the relative importance of phosphatidic acid for this pro-survival effect as phosphatidic acid supplementation fully restores MAPK signaling and partially rescues HeLa cells from choline kinase inhibition. Taken together, these data indicate that the pooling of phosphocholine in cancer cells may be required to provide a ready supply of phosphatidic acid necessary for the feed-forward amplification of cancer survival signaling pathways.

摘要

胆碱是合成磷脂的必需合成底物。胆碱激酶将胆碱磷酸化为磷酸胆碱,磷酸胆碱是磷脂酰胆碱的前体,磷脂酰胆碱是膜的主要磷脂成分,也是脂质信号分子合成的底物。基于核磁共振(NMR)的人类肿瘤代谢组学研究已经确定,相对于正常组织,细胞内磷酸胆碱的浓度显著增加。我们推测,观察到的细胞内磷酸胆碱的积累可能是维持多效性脂质第二信使磷脂酸产生所必需的。磷脂酸是由磷脂酶 D2 从磷脂酰胆碱裂解产生的,是丝裂原激活的蛋白激酶(MAPK)和磷脂酰肌醇 3-激酶(PI3K)/ AKT 存活信号通路的关键激活剂。在这项研究中,我们表明,在永生化的人支气管上皮细胞中,癌基因 H-Ras(V12)的异位表达会增加磷酸胆碱的稳态浓度。然后我们发现,转化的 HeLa 细胞中通过小干扰 RNA(siRNA)沉默胆碱激酶表达,完全消除了高浓度的磷酸胆碱,继而降低了磷脂酰胆碱、磷脂酸和 MAPK 和 PI3K/AKT 通路的信号。这种存活信号的同时降低显著降低了 HeLa 细胞在软琼脂和无胸腺小鼠中的锚定非依赖性存活。最后,我们证实了磷酸脂酰胆碱对这种促存活作用的相对重要性,因为磷酸脂酰胆碱的补充完全恢复了 MAPK 信号,并部分挽救了 HeLa 细胞免受胆碱激酶抑制的影响。总之,这些数据表明,癌细胞中磷酸胆碱的积累可能是提供必需的磷酸脂酰胆碱的前提,以促进癌症存活信号通路的正反馈放大。

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