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In vivo veritas: Using yeast to probe the biological functions of G-quadruplexes

机译:体内验证:使用酵母探测G四联体的生物学功能

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摘要

Certain guanine-rich sequences are capable of forming higher order structures known as G-quadruplexes. Moreover, particular genomic regions in a number of highly divergent organisms are enriched for such sequences, raising the possibility that G-quadruplexes form in vivo and affect cellular processes. While G-quadruplexes have been rigorously studied in vitro, whether these structures actually form in vivo and what their roles might be in the context of the cell have remained largely unanswered questions. Recent studies suggest that G-quadruplexes participate in the regulation of such varied processes as telomere maintenance, transcriptional regulation and ribosome biogenesis. Here we review studies aimed at elucidating the in vivo functions of quadruplex structures, with a particular focus on findings in yeast. In addition, we discuss the utility of yeast model systems in the study of the cellular roles of G-quadruplexes.
机译:某些富含鸟嘌呤的序列能够形成称为G-四链体的更高阶结构。而且,许多高度趋异的生物体中的特定基因组区域富含这种序列,从而增加了G-四链体在体内形成并影响细胞过程的可能性。尽管已经在体外对G-四链体进行了严格的研究,但这些结构是否实际上在体内形成以及它们在细胞中的作用可能仍是一个悬而未决的问题。最近的研究表明,G-四链体参与端粒维持,转录调控和核糖体生物发生等各种过程的调控。在这里,我们回顾旨在阐明四链体结构的体内功能的研究,特别关注酵母中的发现。此外,我们讨论了酵母模型系统在研究G-四链体的细胞作用中的作用。

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