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Visualizing transcription factor dynamics in living cells

机译:可视化活细胞中的转录因子动态

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摘要

The assembly of sequence-specific enhancer-binding transcription factors (TFs) at cis-regulatory elements in the genome has long been regarded as the fundamental mechanism driving cell type–specific gene expression. However, despite extensive biochemical, genetic, and genomic studies in the past three decades, our understanding of molecular mechanisms underlying enhancer-mediated gene regulation remains incomplete. Recent advances in imaging technologies now enable direct visualization of TF-driven regulatory events and transcriptional activities at the single-cell, single-molecule level. The ability to observe the remarkably dynamic behavior of individual TFs in live cells at high spatiotemporal resolution has begun to provide novel mechanistic insights and promises new advances in deciphering causal–functional relationships of TF targeting, genome organization, and gene activation. In this review, we review current transcription imaging techniques and summarize converging results from various lines of research that may instigate a revision of models to describe key features of eukaryotic gene regulation.
机译:长期以来,基因组顺式调控元件上的序列特异性增强子结合转录因子(TFs)的组装一直被认为是驱动细胞特异性基因表达的基本机制。然而,尽管在过去的三十年中进行了广泛的生化,遗传和基因组研究,我们对增强子介导的基因调控的分子机制的理解仍然不完整。成像技术的最新进展现在可以在单细胞,单分子水平上直接显示TF驱动的调节事件和转录活性。以高时空分辨率观察活细胞中个别TFs显着动态行为的能力已开始提供新颖的机理见解,并有望在破译TF靶向,基因组组织和基因激活的因果关系方面取得新进展。在这篇综述中,我们综述了当前的转录成像技术,并总结了不同研究领域的融合结果,这些研究结果可能会引发模型修订,以描述真核基因调控的关键特征。

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