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MNase 图谱分析刺激后的 GM12878 细胞启动子染色质,揭示了动态的和具有反应特异性的核小体结构。

MNase Profiling of Promoter Chromatin in -Stimulated GM12878 Cells Reveals Dynamic and Response-Specific Nucleosome Architecture.

机构信息

Department of Biological Science, Florida State University, Tallahassee, FL 32306.

Department of Biological Science, Florida State University, Tallahassee, FL 32306

出版信息

G3 (Bethesda). 2020 Jul 7;10(7):2171-2178. doi: 10.1534/g3.120.401266.

Abstract

The nucleosome is the primary unit of chromatin structure and commonly imputed as a regulator of nuclear events, although the exact mechanisms remain unclear. Recent studies have shown that certain nucleosomes can have different sensitivities to micrococcal nuclease (MNase) digestion, resulting in the release of populations of nucleosomes dependent on the concentration of MNase. Mapping MNase sensitivity of nucleosomes at transcription start sites genome-wide reveals an important functional nucleosome organization that correlates with gene expression levels and transcription factor binding. In order to understand nucleosome distribution and sensitivity dynamics during a robust genome response, we mapped nucleosome position and sensitivity using multiple concentrations of MNase. We used the innate immune response as a model system to understand chromatin-mediated regulation. Herein we demonstrate that stimulation of a human lymphoblastoid cell line (GM12878) with heat-killed (HKST) results in changes in nucleosome sensitivity to MNase. We show that the HKST response alters the sensitivity of -1 nucleosomes at highly expressed promoters. Finally, we correlate the increased sensitivity with response-specific transcription factor binding. These results indicate that nucleosome sensitivity dynamics reflect the cellular response to HKST and pave the way for further studies that will deepen our understanding of the specificity of genome response.

摘要

核小体是染色质结构的主要单位,通常被认为是核事件的调节剂,尽管确切的机制仍不清楚。最近的研究表明,某些核小体对微球菌核酸酶 (MNase) 消化的敏感性不同,导致依赖于 MNase 浓度的核小体群体释放。在全基因组范围内绘制转录起始位点处的 MNase 敏感性核小体图谱,揭示了与基因表达水平和转录因子结合相关的重要功能核小体组织。为了了解强大基因组反应过程中核小体分布和敏感性的动态变化,我们使用多种 MNase 浓度来绘制核小体位置和敏感性。我们使用固有免疫反应作为模型系统来了解染色质介导的调控。在这里,我们证明用热灭活 (HKST) 刺激人淋巴母细胞系 (GM12878) 会导致 MNase 对核小体敏感性的变化。我们表明,HKST 反应改变了高表达启动子处-1 核小体的敏感性。最后,我们将增加的敏感性与特定于反应的转录因子结合相关联。这些结果表明,核小体敏感性的动态变化反映了细胞对 HKST 的反应,并为进一步的研究铺平了道路,这些研究将加深我们对基因组反应特异性的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f956/7341138/88ab7b0d8af4/2171f1.jpg

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