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Characterization of the elastic properties of the nuclear envelope

机译:核包膜弹性特性的表征

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摘要

Underlying the nuclear envelope (NE) of most eukaryotic cells is the nuclear lamina, a meshwork consisting largely of coiled-coil nuclear intermediate filament proteins that play a critical role in nuclear organization and gene expression, and are vital for the structural stability of the NEucleus. By confocal microscopy and micromanipulation of the NE in living cells and isolated nuclei, we show that the NE undergoes deformations without large-scale rupture and maintains structural stability when exposed to mechanical stress. In conjunction with image analysis, we have developed theory for a two-dimensional elastic material to quantify NE elastic behaviour. We show that the NE is elastic and exhibits characteristics of a continuous two-dimensional solid, including connections between lamins and the embedded nuclear pore complexes. Correlating models of NE lateral organization to the experimental findings indicates a heterogeneous lateral distribution of NE components on a mesoscopic scale.
机译:大多数真核细胞的核包膜(NE)的下面是核层,它是一个主要由卷曲螺旋核中间丝蛋白组成的网,这些蛋白在核组织和基因表达中起着至关重要的作用,对NE的结构稳定性至关重要。 /核。通过共聚焦显微镜和活细胞和离体细胞核中NE的显微操作,我们显示NE经受变形而没有大规模破裂,并在暴露于机械应力时保持结构稳定性。结合图像分析,我们已经开发出一种二维弹性材料的理论来量化NE弹性行为。我们表明,NE是有弹性的,并表现出连续的二维固体的特征,包括lamins和嵌入的核孔复合体之间的连接。 NE横向组织的模型与实验结果的相关性表明,介观尺度上NE组件的横向分布不均匀。

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