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A new fractionation assay, based on the size of formaldehyde-crosslinked, mildly sheared chromatin, delineates the chromatin structure at promoter regions

机译:根据甲醛交联的,轻度剪切的染色质的大小,进行了新的分级测定,描绘了启动子区域的染色质结构

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摘要

To explore the higher order structure of transcribable chromatin in vivo, its local configuration was assessed through the accessibility of the chromatin to crosslinking with formaldehyde. The application of crosslinked and mildly sheared chromatin to sedimentation velocity centrifugation followed by size-fractionation of the DNA enabled us to biochemically distinguish between chromatin with heavily versus sparsely crosslinkable structures. The separated fractions showed a good correlation with gene expression profiles. Genes with poor crosslinking around the promoter region were actively transcribed, while transcripts were hardly detected from genes with extensive crosslinking in their promoter regions. For the inducible gene, Il2, the distribution of the promoter shifted in the gradient following T-cell receptor stimulation, consistent with a change in structure at this locus during activation. The kinetics of this switch preceded the chromatin change observed in a DNase I accessibility assay. Thus, this new chromatin fractionation technique has revealed a change in chromatin structure that has not been previously characterized.
机译:为了探索体内可转录的染色质的更高阶结构,通过染色质与甲醛交联的可及性来评估其局部构型。交联和轻度剪切的染色质在沉降速度离心中的应用,然后对DNA进行大小分级,使我们能够生化区分具有严重可交联结构和稀疏可交联结构的染色质。分离的部分显示出与基因表达谱的良好相关性。在启动子区域周围交联性差的基因被主动转录,而在其启动子区域中具有广泛交联的基因中几乎没有检测到转录本。对于诱导型基因Il2,在T细胞受体刺激后,启动子的分布在梯度中发生位移,这与激活过程中此基因座的结构变化一致。此开关的动力学先于DNase I可及性分析中观察到的染色质变化。因此,这种新的染色质分级分离技术已经揭示了染色质结构的变化,这是以前未曾表征的。

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