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首页> 外文期刊>Nucleic Acids Research >Emerin modulates spatial organization of chromosome territories in cells on softer matrices
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Emerin modulates spatial organization of chromosome territories in cells on softer matrices

机译:Emerin调节在更柔和的矩阵上的细胞中的染色体地区的空间组织

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Cells perceive and relay external mechanical forces into the nucleus through the nuclear envelope. Here we examined the effect of lowering substrate stiffness as a paradigm to address the impact of altered mechanical forces on nuclear structure-function relationships. RNA sequencing of cells on softer matrices revealed significant transcriptional imbalances, predominantly in chromatin associated processes and transcriptional deregulation of human Chromosome 1. Furthermore, 3-Dimensional fluorescence in situ hybridization (3D-FISH) analyses showed a significant mislocalization of Chromosome 1 and 19 Territories (CT) into the nuclear interior, consistent with their transcriptional deregulation. However, CT18 with relatively lower transcriptional dysregulation, also mislocalized into the nuclear interior. Furthermore, nuclear Lamins that regulate chromosome positioning, were mislocalized into the nuclear interior in response to lowered matrix stiffness. Notably, Lamin B2 overexpression retained CT18 near the nuclear periphery in cells on softer matrices. While, cells on softer matrices also activated emerin phosphorylation at a novel Tyr99 residue, the inhibition of which in a phospho-deficient mutant (emerinY99F), selectively retained chromosome 18 and 19 but not chromosome 1 territories at their conserved nuclear locations. Taken together, emerin functions as a key mechanosensor, that modulates the spatial organization of chromosome territories in the interphase nucleus.
机译:细胞通过核包封感知并将外部机械力传递到核中。在这里,我们检查了降低基材刚度作为范例的影响,以解决改变机械力对核结构关系的影响。较软矩阵上的细胞RNA测序显示出显着的转录失衡,主要是染色质相关方法和人染色体的转录放松管制。此外,三维荧光原位杂交(3D鱼)分析显示出染色体1和19个领土的显着错误分析(CT)进入核内部,符合其转录管制令人遗症。然而,CT18具有相对较低的转录失调,也误入核内部。此外,调节染色体定位的核层状,响应于降低的基质刚度,在核内部被误报。值得注意的是,Lamin B2过表达保留CT18在更柔软的矩阵上的细胞中的核外周附近保留CT18。虽然较软矩阵上的细胞在新的Tyr99残基中也活化了Emerin磷酸化,其抑制在磷缺乏型突变体(Emeriny99F)中,选择性地保留了18和19,但不是在他们的保守核位置的染色体1个领土。一起携带,emerin用作一个关键机械传感器,可调节核心细胞核中的染色体地区的空间组织。

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