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The multiscale and multiphase organization of the transcriptome

机译:转录组的多阶段和多相组织

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Gene expression must be co-ordinated to cellular activity. From transcription to decay, the expression of millions of RNA molecules is highly synchronized. RNAs are covered by proteins that regulate every aspect of their cellular life: expression, storage, translational status, localization, and decay. Many RNAs and their associated regulatory proteins can coassemble to condense into liquid droplets, viscoelastic hydrogels, freeze into disorganized glass-like aggregates, or harden into quasi-crystalline solids. Phase separations provide a framework for transcriptome organization where the single functional unit is no longer a transcript but instead an RNA regulon. Here, we will analyze the interaction networks that underlie RNA super-assemblies, assess the complex multiscale, multiphase architecture of the transcriptome, and explore how the biophysical state of an RNA molecule can define its fate. Phase separations are emerging as critical routes for the epi-transcriptomic control of gene expression.
机译:基因表达必须与细胞活性协调。从转录到衰减,数百万RNA分子的表达高度同步。 RNA被调节其细胞寿命各个方面的蛋白质覆盖:表达,存储,翻译状态,定位和衰减。许多RNA及其相关的调节蛋白可以凝结成液滴,粘弹性水凝胶,冷冻成混乱的玻璃样聚集体,或将其变成准晶体固体。相距为转录组组织提供了一个框架,其中单个功能单元不再是转录本,而是RNA调节。在这里,我们将分析RNA超级组件的基础,评估转录组的复杂多尺度,多相结构,并探讨RNA分子的生物物理状态如何定义其命运。相位分离是作为基因表达表观转录组控制的关键途径而出现的。

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