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细胞核的物质属性:一个尺度问题。

The Material Properties of the Cell Nucleus: A Matter of Scale.

机构信息

MCD, Center for Integrative Biology (CBI), University of Toulouse, CNRS, 169 Avenue Marianne Grunberg-Manago, 31062 Toulouse, France.

出版信息

Cells. 2023 Jul 28;12(15):1958. doi: 10.3390/cells12151958.

Abstract

Chromatin regulatory processes physically take place in the environment of the cell nucleus, which is filled with the chromosomes and a plethora of smaller biomolecules. The nucleus contains macromolecular assemblies of different sizes, from nanometer-sized protein complexes to micrometer-sized biomolecular condensates, chromosome territories, and nuclear bodies. This multiscale organization impacts the transport processes within the nuclear interior, the global mechanical properties of the nucleus, and the way the nucleus senses and reacts to mechanical stimuli. Here, we discuss recent work on these aspects, including microrheology and micromanipulation experiments assessing the material properties of the nucleus and its subcomponents. We summarize how the properties of multiscale media depend on the time and length scales probed in the experiment, and we reconcile seemingly contradictory observations made on different scales. We also revisit the concept of liquid-like and solid-like material properties for complex media such as the nucleus. We propose that the nucleus can be considered a multiscale viscoelastic medium composed of three major components with distinct properties: the lamina, the chromatin network, and the nucleoplasmic fluid. This multicomponent organization enables the nucleus to serve its different functions as a reaction medium on the nanoscale and as a mechanosensor and structural scaffold on the microscale.

摘要

染色质调控过程实际上发生在充满染色体和大量较小生物分子的细胞核环境中。细胞核包含不同大小的大分子组装体,从纳米级的蛋白质复合物到微米级的生物分子凝聚物、染色体区域和核体。这种多尺度组织影响核内的输运过程、细胞核的整体力学性质以及细胞核感知和对机械刺激做出反应的方式。在这里,我们讨论了这些方面的最新工作,包括评估核及其亚组分的材料特性的微流变学和微操作实验。我们总结了多尺度介质的性质如何取决于实验中探测的时间和长度尺度,并调和了在不同尺度上观察到的看似矛盾的结果。我们还重新审视了细胞核等复杂介质的类液体和类固体材料特性的概念。我们提出,细胞核可以被视为一个由三个具有不同特性的主要成分组成的多尺度黏弹性介质:核纤层、染色质网络和核质流体。这种多组分组织使细胞核能够在纳米尺度上作为反应介质,在微米尺度上作为机械感受器和结构支架来发挥其不同的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/506c/10416959/4abf44104ef6/cells-12-01958-g001.jpg

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