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Nuclear lamina maintains global spatial organization of chromatin in Drosophila cultured cells

机译:核层维持果蝇培养细胞中染色质的整体空间组织

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Interphase chromatin in animals is constrained by interactions with the nuclear lamina (NL) - a protein mesh lining nuclear envelope and composed from lamins and lamin-associated proteins. About 30% of chromatin is located near the NL in a living cell forming densely packed lamina-associated domains (LADs). LADs largely overlap with topologically-associating domains (TADs) build up from repressed chromatin, and contain predominately inactive genes, thus playing a role in transcription regulation. Here, we show that the NL disruption in Drosophila leads to en mass chromatin compactisation and redistribution towards the nuclear interior. This results in an increase of contact frequency between active and repressed fractions of the genome accompanied by the transcription upregulation in LADs. A subset of TADs characterized by high level of LADs become less compact, that could be driven by the loss of interactions with the nuclear envelope as revealed by polymer modelling. These results indicate that the NL in Drosophila cells plays a role in the specific spatial positioning of the chromatin inside the nucleus, its compartmentalization and at least partially controls the packaging density and low-level transcription in LADs.
机译:动物中的相间染色质受到与核纤层(NL)相互作用的限制,NL核是由核纤层蛋白和层粘连蛋白组成的蛋白质,衬里有核膜。约30%的染色质位于活细胞中的NL附近,形成紧密堆积的椎板相关结构域(LAD)。 LAD与由抑制的染色质建立的拓扑相关结构域(TAD)大部分重叠,并且主要包含无活性的基因,因此在转录调控中发挥作用。在这里,我们表明果蝇中的NL破坏导致大量染色质致密化并向核内部重新分布。这导致基因组的有效部分和被抑制部分之间的接触频率增加,并伴随着L​​ADs中的转录上调。以高LAD含量为特征的TAD子集变得不太紧凑,这可能是由于聚合物建模所揭示的与核被膜相互作用的丧失所致。这些结果表明,果蝇细胞中的NL在染色质在核内的特定空间定位,其区室化中起着一定作用,并至少部分控制LAD中的包装密度和低水平转录。

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