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首页> 外文期刊>Biophysical Journal >Chromatin and Cytoskeletal Tethering Determine Nuclear Morphology in Progerin-Expressing Cells
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Chromatin and Cytoskeletal Tethering Determine Nuclear Morphology in Progerin-Expressing Cells

机译:染色质和细胞骨架系列在普罗仑素的细胞中确定核形态

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摘要

The nuclear morphology of eukaryotic cells is determined by the interplay between the lamina forming the nuclear skeleton, the chromatin inside the nucleus, and the coupling with the cytoskeleton. Nuclear alterations are often associated with pathological conditions as in Hutchinson-Gilford progeria syndrome, in which a mutation in the lamin A gene yields an altered form of the protein, named progerin, and an aberrant nuclear shape. Here, we introduce an inducible cellular model of Hutchinson-Gilford progeria syndrome in HeLa cells in which increased progerin expression leads to alterations in the coupling of the lamin shell with cytoskeletal or chromatin tethers as well as with polycomb group proteins. Furthermore, our experiments show that progerin expression leads to enhanced nuclear shape fluctuations in response to cytoskeletal activity. To interpret the experimental results, we introduce a computational model of the cell nucleus that explicitly includes chromatin fibers, the nuclear shell, and coupling with the cytoskeleton. The model allows us to investigate how the geometrical organization of the chromatinlamin tether affects nuclear morphology and shape fluctuations. In sum, our findings highlight the crucial role played by laminchromatin and lamin-cytoskeletal alterations in determining nuclear shape morphology and in affecting cellular functions and gene regulation.
机译:真核细胞的核形态由薄层之间的相互作用,形成核骨架,核内部的染色质,以及与细胞骨架的偶联。核改变通常与霍金森 - 吉尔福德普利氏综合征中的病理条件有关,其中Lamin中的突变基因产生改变的蛋白质形式,名为Progerin和异常核形状。在这里,我们介绍了Huthinson-Gilford Progeria综合征在Huthinson-Gilford Progeria综合征的诱导蜂窝模型,其中增加的普罗仑素表达导致层骨壳与细胞骨骼或染色质的偶联和染色质蛋白的偶联的改变以及Polycomb组蛋白质。此外,我们的实验表明,Progerin表达导致响应细胞骨骼活性的核形状波动。为了解释实验结果,我们引入细胞核的计算模型,明确地包括染色质纤维,核壳和与细胞骨架的偶联。该模型使我们能够研究染色体系绳的几何组织如何影响核形态和形状波动。总而言之,我们的研究结果强调了Laminchromatin和Lamin-CytoSkeletal改变在确定核形态和影响细胞功能和基因调控方面所发挥的至关重要作用。

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