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首页> 外文期刊>Cancer Cell International >Molecular network profiling of U373MG human glioblastoma cells following induction of apoptosis by novel marine-derived anti-cancer 1,2,3,4-tetrahydroisoquinoline alkaloids
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Molecular network profiling of U373MG human glioblastoma cells following induction of apoptosis by novel marine-derived anti-cancer 1,2,3,4-tetrahydroisoquinoline alkaloids

机译:新型海洋来源的抗癌1,2,3,4-四氢异喹啉生物碱诱导凋亡后U373MG人胶质母细胞瘤细胞的分子网络分析

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Glioblastoma is the most aggressive form of brain tumors showing resistance to treatment with various chemotherapeutic agents. The most effective way to eradicate glioblastoma requires the concurrent inhibition of multiple signaling pathways and target molecules involved in the progression of glioblastoma. Recently, we obtained a series of 1,2,3,4-tetrahydroisoquinoline alkaloids with potent anti-cancer activities, including ecteinascidin-770 (ET-770; the compound 1a) and renieramycin M (RM; the compound 2a) from Thai marine invertebrates, together with a 2’-N-4”-pyridinecarbonyl derivative of ET-770 (the compound 3). We attempted to characterize the molecular pathways responsible for cytotoxic effects of these compounds on a human glioblastoma cell line U373MG. We studied the genome-wide gene expression profile on microarrays and molecular networks by using pathway analysis tools of bioinformatics. All of these compounds induced apoptosis of U373MG cells at nanomolar concentrations. The compound 3 reduced the expression of 417 genes and elevated the levels of 84 genes, while ET-770 downregulated 426 genes and upregulated 45 genes. RM decreased the expression of 274 genes and increased the expression of 9 genes. The set of 196 downregulated genes and 6 upregulated genes showed an overlap among all the compounds, suggesting an existence of the common pathways involved in induction of apoptosis. We identified the ErbB (EGFR) signaling pathway as one of the common pathways enriched in the set of downregulated genes, composed of PTK2, AKT3, and GSK3B serving as key molecules that regulate cell movement and the nervous system development. Furthermore, a GSK3B-specific inhibitor induced apoptosis of U373MG cells, supporting an anti-apoptotic role of GSK3B. Molecular network analysis is a useful approach not only to characterize the glioma-relevant pathways but also to identify the network-based effective drug targets.
机译:胶质母细胞瘤是脑肿瘤的最具侵略性的形式,显示出对各种化学治疗剂的抗性。根除胶质母细胞瘤的最有效方法需要同时抑制胶质母细胞瘤进展中涉及的多个信号通路和靶分子。最近,我们从泰国海洋公司获得了一系列具有有效抗癌活性的1,2,3,4-四氢异喹啉生物碱,包括ecteinascidin-770(ET-770;化合物1a)和renieramycin M(RM;化合物2a)。无脊椎动物,以及ET-770的2'-N-4”-吡啶羰基衍生物(化合物3)。我们试图表征负责这些化合物对人胶质母细胞瘤细胞系U373MG的细胞毒性作用的分子途径。我们通过使用生物信息学的途径分析工具研究了微阵列和分子网络上的全基因组基因表达谱。所有这些化合物均以纳摩尔浓度诱导U373MG细胞凋亡。化合物3减少了417个基因的表达,并提高了84个基因的水平,而ET-770下调了426个基因,上调了45个基因。 RM减少了274个基因的表达,并增加了9个基因的表达。 196个下调基因和6个上调基因的集合显示所有化合物之间都有重叠,表明存在诱导凋亡的常见途径。我们确定ErbB(EGFR)信号传导途径是丰富的下调基因集中的常见途径之一,该基因由PTK2,AKT3和GSK3B组成,它们是调节细胞运动和神经系统发育的关键分子。此外,GSK3B特异性抑制剂诱导U373MG细胞凋亡,支持GSK3B的抗凋亡作用。分子网络分析不仅是表征神经胶质瘤相关途径的有用方法,而且是确定基于网络的有效药物靶标的有用方法。

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