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Toward a systematic understanding of translational regulatory elements in human and viruses

机译:全面了解人类和病毒中的翻译调控元件

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Translational regulation is a critical step in the production of proteins from genomic material in both human and viruses. However, unlike other steps of the central dogma, such as transcriptional regulation, little is known about the cis-regulatory elements involved. In a recent study we devised a high-throughput bicistronic reporter assay for the discovery and the characterization of thousands of novel Internal Ribosome Entry Sites (IRESs) in human and hundreds of viral genomes. Our results provide insights into the landscape of IRES elements in human and viral transcripts and the cis-regulatory sequences underlying their activity. Here, we discuss these results as well as emerging insights from other studies, providing new views about translational regulation in human and viruses. In addition, we highlight recent high-throughput technologies in the field and discuss how combining insights from high- and low-throughput approaches can illuminate yet uncovered mechanisms of translational regulation.
机译:在人类和病毒中,基因组材料生产蛋白质的过程中,翻译调控是至关重要的一步。但是,与中央教条的其他步骤(例如转录调控)不同,对所涉及的顺式调控元件知之甚少。在最近的一项研究中,我们设计了一种高通量双顺反子报告基因检测法,用于在人和数百个病毒基因组中发现和表征数千个新型内部核糖体进入位点(IRES)。我们的结果提供了对人类和病毒转录本中IRES元素的概况以及其活性背后的顺式调控序列的见解。在这里,我们讨论这些结果以及其他研究的新见解,提供有关人和病毒中翻译调控的新观点。此外,我们重点介绍了该领域最新的高通量技术,并讨论了如何将高通量和低通量方法的见解结合起来,以阐明尚未发现的翻译调控机制。

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