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Initial high-resolution microscopic mapping of active and inactive regulatory sequences proves non-random 3D arrangements in chromatin domain clusters

机译:主动和无效调节序列的初始高分辨率显微图证明了染色质域簇中的非随机3D排列

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Background The association of active transcription regulatory elements (TREs) with DNAse I hypersensitivity (DHS[+]) and an ‘open’ local chromatin configuration has long been known. However, the 3D topography of TREs within the nuclear landscape of individual cells in relation to their active or inactive status has remained elusive. Here, we explored the 3D nuclear topography of active and inactive TREs in the context of a recently proposed model for a functionally defined nuclear architecture, where an active and an inactive nuclear compartment (ANC–INC) form two spatially co-aligned and functionally interacting networks. Results Using 3D structured illumination microscopy, we performed 3D FISH with differently labeled DNA probe sets targeting either sites with DHS[+], apparently active TREs, or DHS[?] sites harboring inactive TREs. Using an in-house image analysis tool, DNA targets were quantitatively mapped on chromatin compaction shaped 3D nuclear landscapes. Our analyses present evidence for a radial 3D organization of chromatin domain clusters (CDCs) with layers of increasing chromatin compaction from the periphery to the CDC core. Segments harboring active TREs are significantly enriched at the decondensed periphery of CDCs with loops penetrating into interchromatin compartment channels, constituting the ANC. In contrast, segments lacking active TREs (DHS[?]) are enriched toward the compacted interior of CDCs (INC). Conclusions Our results add further evidence in support of the ANC–INC network model. The different 3D topographies of DHS[+] and DHS[?] sites suggest positional changes of TREs between the ANC and INC depending on their functional state, which might provide additional protection against an inappropriate activation. Our finding of a structural organization of CDCs based on radially arranged layers of different chromatin compaction levels indicates a complex higher-order chromatin organization beyond a dichotomic classification of chromatin into an ‘open,’ active and ‘closed,’ inactive state.
机译:背景活性转录调控元件(TRE)与DNAse I超敏反应(DHS [+])和“开放”局部染色质构型的关联早已为人所知。但是,与单个细胞的活跃或不活跃状态相关的TRE的3D地形仍然难以捉摸。在这里,我们在功能定义的核体系结构的最近提出的模型的背景下,探索了活动和不活动的TRE的3D核形貌,其中活动和不活动的核隔室(ANC-INC)形成两个空间上相互对齐且在功能上相互作用的空间网络。结果使用3D结构照明显微镜,我们用不同标记的DNA探针组进行了3D FISH,靶向DHS [+],明显活跃的TRE或具有非活跃TRE的DHS [α]的位点。使用内部图像分析工具,将DNA目标定量映射到染色质压缩形3D核景观上。我们的分析为染色质域簇(CDC)的径向3D组织提供了证据,染色质域簇(CDC)的层从外周到CDC核心的染色质紧密性增加。带有活性TRE的片段在CDC的缩合边缘处显着富集,其环渗透到染色质间通道中,构成ANC。相反,缺乏活性TRE(DHS [α])的片段向CDC(INC)的内部致富。结论我们的结果为支持ANC-INC网络模型提供了进一步的证据。 DHS [+]和DHS [α]站点的不同3D地形图表明ANC和INC之间TRE的位置变化取决于它们的功能状态,这可能会提供针对不适当激活的额外保护。我们发现,基于不同染色质压实度水平排列的径向层的CDC的结构组织表明,复杂的高阶染色质组织超出了染色质的二分分类,分为“开放”,“活跃”和“封闭”非活跃状态。

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