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组织特异性中性粒细胞胞外陷阱即使在异源系统中也会改变基因组组织和调控。

Tissue-specific NETs alter genome organization and regulation even in a heterologous system.

作者信息

de Las Heras Jose I, Zuleger Nikolaj, Batrakou Dzmitry G, Czapiewski Rafal, Kerr Alastair R W, Schirmer Eric C

机构信息

a The Wellcome Trust Centre for Cell Biology , University of Edinburgh , Edinburgh , UK.

出版信息

Nucleus. 2017 Jan 2;8(1):81-97. doi: 10.1080/19491034.2016.1261230. Epub 2017 Jan 3.

DOI:10.1080/19491034.2016.1261230
PMID:28045568
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5287206/
Abstract

Different cell types exhibit distinct patterns of 3D genome organization that correlate with changes in gene expression in tissue and differentiation systems. Several tissue-specific nuclear envelope transmembrane proteins (NETs) have been found to influence the spatial positioning of genes and chromosomes that normally occurs during tissue differentiation. Here we study 3 such NETs: NET29, NET39, and NET47, which are expressed preferentially in fat, muscle and liver, respectively. We found that even when exogenously expressed in a heterologous system they can specify particular genome organization patterns and alter gene expression. Each NET affected largely different subsets of genes. Notably, the liver-specific NET47 upregulated many genes in HT1080 fibroblast cells that are normally upregulated in hepatogenesis, showing that tissue-specific NETs can favor expression patterns associated with the tissue where the NET is normally expressed. Similarly, global profiling of peripheral chromatin after exogenous expression of these NETs using lamin B1 DamID revealed that each NET affected the nuclear positioning of distinct sets of genomic regions with a significant tissue-specific component. Thus NET influences on genome organization can contribute to gene expression changes associated with differentiation even in the absence of other factors and overt cellular differentiation changes.

摘要

不同的细胞类型呈现出独特的三维基因组组织模式,这些模式与组织和分化系统中基因表达的变化相关。已发现几种组织特异性核膜跨膜蛋白(NETs)会影响组织分化过程中正常发生的基因和染色体的空间定位。在这里,我们研究了3种这样的NETs:NET29、NET39和NET47,它们分别在脂肪、肌肉和肝脏中优先表达。我们发现,即使在异源系统中外源表达,它们也能指定特定的基因组组织模式并改变基因表达。每种NET主要影响不同的基因子集。值得注意的是,肝脏特异性的NET47上调了许多在HT1080成纤维细胞中通常在肝发生过程中上调的基因,这表明组织特异性的NETs可以促进与NET正常表达的组织相关的表达模式。同样,使用层粘连蛋白B1 DamID对外源表达这些NETs后的外周染色质进行全局分析发现,每种NET都影响了具有显著组织特异性成分的不同基因组区域集的核定位。因此,即使在没有其他因素和明显细胞分化变化的情况下,NET对基因组组织的影响也可能导致与分化相关的基因表达变化。

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