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Nanoscale chromatin imaging and analysis platform bridges 4D chromatin organization with molecular function

机译:纳米级染色质成像和分析平台桥梁4D染色质组织分子功能

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摘要

Extending across multiple length scales, dynamic chromatin structure is linked to transcription through the regulation of genome organization. However, no individual technique can fully elucidate this structure and its relation to molecular function at all length and time scales at both a single-cell level and a population level. Here, we present a multitechnique nanoscale chromatin imaging and analysis (nano-ChIA) platform that consolidates electron tomography of the primary chromatin fiber, optical super-resolution imaging of transcription processes, and label-free nano-sensing of chromatin packing and its dynamics in live cells. Using nano-ChIA, we observed that chromatin is localized into spatially separable packing domains, with an average diameter of around 200 nanometers, sub-megabase genomic size, and an internal fractal structure. The chromatin packing behavior of these domains exhibits a complex bidirectional relationship with active gene transcription. Furthermore, we found that properties of PDs are correlated among progenitor and progeny cells across cell division.
机译:横跨多个长度延伸,动态染色质结构通过基因组组织的调节与转录相关联。然而,没有单个技术可以完全阐明这种结构,并且在单个细胞水平和人口水平的所有长度和时间尺度上的分子功能的关系。在这里,我们介绍了一种多书纳米级染色质成像和分析(纳米Chia)平台,可整齐原色染色质纤维的电子断层扫描,转录过程的光学超分辨率成像,以及无标记的染色质包装纳米感应及其动力学活细胞。使用纳米Chia,我们观察到染色质地局部地置于空间可分离的包装结构域,平均直径约为200纳米,甲素基因组大小和内部分形结构。这些结构域的染色质包装行为表现出与活性基因转录的复杂双向关系。此外,我们发现PDS的性质在细胞分裂中祖细胞和后代细胞之间的相关性。

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