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首页> 外文期刊>Radiotherapy and oncology: Journal of the European Society for Therapeutic Radiology and Oncology >The hypoxic proteome is influenced by gene-specific changes in mRNA translation.
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The hypoxic proteome is influenced by gene-specific changes in mRNA translation.

机译:低氧蛋白质组受到mRNA翻译中基因特异性变化的影响。

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BACKGROUND AND PURPOSE: Hypoxia causes a rapid reduction in mRNA translation efficiency. This inhibition does not affect all mRNA species to the same extent and can therefore contribute significantly to hypoxia-induced differential protein expression. Our aim in this study was to characterize changes in gene expression during acute hypoxia and evaluate the contribution of regulation via mRNA translation on these changes. For each gene, the contribution of changes in mRNA abundance versus mRNA translation was determined. MATERIALS AND METHODS: DU145 prostate carcinoma cells were exposed to 4h of hypoxia (<0.02% O2). Efficiently translated mRNAs were isolated by sedimentation through a sucrose gradient. Affymetrix microarray technology was used to evaluate both the transcriptional and translational contribution to gene expression. Results were validated by quantitative PCR. RESULTS: One hundred and twenty genes were more than 4-fold upregulated by hypoxia in the efficiently translated fraction of mRNA, in comparison to only 76 genes at the level of transcription. Of the 50 genes demonstrating the largest changes in translation, 11 were found to be more than 2-fold over represented in the translated fraction in comparison to their overall transcriptional level. The gene with the highest translational contribution to its induction was CITED-2, which is a negative regulator of HIF-1 transcriptional activity. CONCLUSIONS: Gene-specific regulation of mRNA translation contributes significantly to differential gene expression during hypoxia.
机译:背景与目的:缺氧导致mRNA翻译效率快速降低。这种抑制作用不会在相同程度上影响所有mRNA种类,因此可显着促进缺氧诱导的差异蛋白表达。我们在这项研究中的目的是表征急性缺氧期间基因表达的变化,并评估通过mRNA翻译对这些变化进行调节的作用。对于每个基因,确定了mRNA丰度变化对mRNA翻译的贡献。材料与方法:DU145前列腺癌细胞暴露于缺氧4h(<0.02%O2)。通过蔗糖梯度沉降,分离出有效翻译的mRNA。 Affymetrix微阵列技术用于评估转录和翻译对基因表达的贡献。通过定量PCR验证结果。结果:与低氧水平相比,只有一百二十个基因在转录水平上被低氧表达上调了4倍以上。在显示最大变化的50个基因中,有11个被发现比其总转录水平高2倍以上。诱导其翻译贡献最高的基因是CITED-2,它是HIF-1转录活性的负调节剂。结论:缺氧期间基因特异性调控mRNA的翻译显着有助于差异基因的表达。

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