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首页> 外文期刊>Oncology reports >Comprehensive analysis of time- and dose-dependent patterns of gene expression in a human mesenchymal stem cell line exposed to low-dose ionizing radiation.
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Comprehensive analysis of time- and dose-dependent patterns of gene expression in a human mesenchymal stem cell line exposed to low-dose ionizing radiation.

机译:对暴露于低剂量电离辐射的人间充质干细胞系中基因表达的时间和剂量依赖性模式的综合分析。

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摘要

We focused on the transcriptional responses induced by low and very low doses of ionizing radiation with time effect. Regardless of their importance only a few limited studies have been done. Here we applied a large-scale gene transcript profile to elucidate the genes and biological pathways. Immortalized human mesenchymal stem cells were irradiated with 0.01, 0.05, 0.2 and 1 Gy of gamma radiation and total RNA was extracted from each cell line at 1, 4, 12 and 48 h after exposure. The essential transcriptional responses were identified according to dose and time. A total of 6,016 genes showed altered expression patterns at more than one time point or dose level among the investigated 10,800 genes. Genes that showed dose-dependent expression responses were involved in signal transduction, regulation of transcription, proteolysis, peptidolysis and metabolism. Those that showed time-dependent responses were divided into two distinct groups: the up-and-down group was associated with 'cellular defense mechanisms' such as apoptosis, cell adhesion, stress response and immune response and the down-and-up group with 'fundamental cellular processes' such as DNA replication, mitosis, RNA splicing, DNA repair and translation initiation. Genes showing both dose-and time-dependent responses exhibited a mixture of both features. A highly non-linear relationship between the IR dose and the transcriptional relative response was obtained from the dose-dependent group. The time-dependent group also exhibited a non-linear relationship as the complex effect group did. Some of the early-reactive-phase (1-4 h) genes showed a differential expression response to 0.01, 0.05 and 0.2 Gy but were unresponsive to 1 Gy. Some of the late-recovery-phase (12-48 h) genes showed a differential expression to 1 Gy but were relatively unresponsive to other doses. We further characterized the gene expression patterns that could be implicated in the molecular mechanism of the cellular responses to low and very low-dose irradiation.
机译:我们专注于由低剂量和非常低剂量的电离辐射引起的转录反应以及时间效应。无论它们的重要性如何,仅进行了一些有限的研究。在这里,我们应用了大规模的基因转录谱,以阐明基因和生物学途径。用0.01、0.05、0.2和1 Gy的γ射线照射永生化的人间充质干细胞,并在暴露后1、4、12和48小时从每个细胞系中提取总RNA。根据剂量和时间确定必需的转录反应。在所研究的10,800个基因中,共有6,016个基因在一个以上的时间点或剂量水平上显示出改变的表达模式。显示出剂量依赖性表达反应的基因参与信号转导,转录调节,蛋白水解,肽水解和代谢。那些表现出时间依赖性反应的被分为两个不同的组:向上和向下组与细胞凋亡,细胞粘附,应激反应和免疫反应等“细胞防御机制”相关,而向下和向上组则与凋亡相关。 “基本细胞过程”,例如DNA复制,有丝分裂,RNA剪接,DNA修复和翻译起始。同时显示剂量和时间依赖性反应的基因表现出两种特征的混合。从剂量依赖性组获得了IR剂量和转录相对应答之间的高度非线性关系。时间依赖性组也表现出非线性关系,复杂效应组也是如此。一些早期反应阶段(1-4小时)基因显示出对0.01、0.05和0.2 Gy的差异表达响应,但对1 Gy无响应。一些晚期恢复期(12-48小时)基因显示与1 Gy的差异表达,但对其他剂量无反应。我们进一步表征了基因表达模式,该模式可能与细胞对低剂量和非常低剂量辐射的分子机制有关。

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