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人类离子通道TRPM2的一种剪接变体通过缺氧诱导因子(HIF)-1/2α调节神经母细胞瘤的肿瘤生长。

A splice variant of the human ion channel TRPM2 modulates neuroblastoma tumor growth through hypoxia-inducible factor (HIF)-1/2α.

作者信息

Chen Shu-jen, Hoffman Nicholas E, Shanmughapriya Santhanam, Bao Lei, Keefer Kerry, Conrad Kathleen, Merali Salim, Takahashi Yoshinori, Abraham Thomas, Hirschler-Laszkiewicz Iwona, Wang JuFang, Zhang Xue-Qian, Song Jianliang, Barrero Carlos, Shi Yuguang, Kawasawa Yuka Imamura, Bayerl Michael, Sun Tianyu, Barbour Mustafa, Wang Hong-Gang, Madesh Muniswamy, Cheung Joseph Y, Miller Barbara A

机构信息

From the Departments of Pediatrics.

the Center for Translational Medicine and Departments of Biochemistry and.

出版信息

J Biol Chem. 2014 Dec 26;289(52):36284-302. doi: 10.1074/jbc.M114.620922. Epub 2014 Nov 12.

Abstract

The calcium-permeable ion channel TRPM2 is highly expressed in a number of cancers. In neuroblastoma, full-length TRPM2 (TRPM2-L) protected cells from moderate oxidative stress through increased levels of forkhead box transcription factor 3a (FOXO3a) and superoxide dismutase 2. Cells expressing the dominant negative short isoform (TRPM2-S) had reduced FOXO3a and superoxide dismutase 2 levels, reduced calcium influx in response to oxidative stress, and enhanced reactive oxygen species, leading to decreased cell viability. Here, in xenografts generated with SH-SY5Y neuroblastoma cells stably expressing TRPM2 isoforms, growth of tumors expressing TRPM2-S was significantly reduced compared with tumors expressing TRPM2-L. Expression of hypoxia-inducible factor (HIF)-1/2α was significantly reduced in TRPM2-S-expressing tumor cells as was expression of target proteins regulated by HIF-1/2α including those involved in glycolysis (lactate dehydrogenase A and enolase 2), oxidant stress (FOXO3a), angiogenesis (VEGF), mitophagy and mitochondrial function (BNIP3 and NDUFA4L2), and mitochondrial electron transport chain activity (cytochrome oxidase 4.1/4.2 in complex IV). The reduction in HIF-1/2α was mediated through both significantly reduced HIF-1/2α mRNA levels and increased levels of von Hippel-Lindau E3 ligase in TRPM2-S-expressing cells. Inhibition of TRPM2-L by pretreatment with clotrimazole or expression of TRPM2-S significantly increased sensitivity of cells to doxorubicin. Reduced survival of TRPM2-S-expressing cells after doxorubicin treatment was rescued by gain of HIF-1 or -2α function. These data suggest that TRPM2 activity is important for tumor growth and for cell viability and survival following doxorubicin treatment and that interference with TRPM2-L function may be a novel approach to reduce tumor growth through modulation of HIF-1/2α, mitochondrial function, and mitophagy.

摘要

钙通透性离子通道TRPM2在多种癌症中高表达。在神经母细胞瘤中,全长TRPM2(TRPM2-L)通过增加叉头框转录因子3a(FOXO3a)和超氧化物歧化酶2的水平来保护细胞免受中度氧化应激。表达显性负性短异构体(TRPM2-S)的细胞中FOXO3a和超氧化物歧化酶2水平降低,对氧化应激的钙内流减少,活性氧增加,导致细胞活力下降。在此,在用稳定表达TRPM2异构体的SH-SY5Y神经母细胞瘤细胞生成的异种移植中,与表达TRPM2-L的肿瘤相比,表达TRPM2-S的肿瘤生长明显减少。在表达TRPM2-S的肿瘤细胞中,缺氧诱导因子(HIF)-1/2α的表达显著降低,HIF-1/2α调节的靶蛋白的表达也显著降低,这些靶蛋白包括参与糖酵解的蛋白(乳酸脱氢酶A和烯醇化酶2)、氧化应激蛋白(FOXO3a)、血管生成蛋白(VEGF)、线粒体自噬和线粒体功能蛋白(BNIP3和NDUFA4L2)以及线粒体电子传递链活性蛋白(复合物IV中的细胞色素氧化酶4.1/4.2)。TRPM2-S表达细胞中HIF-1/2α的减少是通过HIF-1/2α mRNA水平显著降低和von Hippel-Lindau E3连接酶水平增加介导的。用克霉唑预处理抑制TRPM2-L或表达TRPM2-S可显著增加细胞对阿霉素的敏感性。阿霉素处理后,表达TRPM2-S的细胞存活率降低可通过恢复HIF-1或-2α功能来挽救。这些数据表明,TRPM2活性对于肿瘤生长以及阿霉素治疗后的细胞活力和存活很重要,干扰TRPM2-L功能可能是一种通过调节HIF-1/2α、线粒体功能和线粒体自噬来减少肿瘤生长的新方法。

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