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Nuclear envelope mechanobiology: linking the nuclear structure and function

機譯:核膜力學(xué)生物學(xué):將核結(jié)構(gòu)和功能聯(lián)系起來

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摘要

The nucleus, central to cellular activity, relies on both direct mechanical input as well as its molecular transducers to sense external stimuli and respond by regulating intra-nuclear chromatin organization that determines cell function and fate. In mesenchymal stem cells of musculoskeletal tissues, changes in nuclear structures are emerging as a key modulator of their differentiation and proliferation programs. In this review we will first introduce the structural elements of the nucleoskeleton and discuss the current literature on how nuclear structure and signaling are altered in relation to environmental and tissue level mechanical cues. We will focus on state-of-the-art techniques to apply mechanical force and methods to measure nuclear mechanics in conjunction with DNA, RNA, and protein visualization in living cells. Ultimately, combining real-time nuclear deformations and chromatin dynamics can be a powerful tool to study mechanisms of how forces affect the dynamics of genome function.
機譯:細胞核是細胞活動的核心,依靠直接機械輸入及其分子轉(zhuǎn)導(dǎo)來感知外部刺激,并通過調(diào)節(jié)決定細胞功能和命運的核內(nèi)染色質(zhì)組織來做出反應(yīng)。在肌肉骨骼組織的間充質(zhì)干細胞中,核結(jié)構(gòu)的變化正在成為其分化和增殖計劃的關(guān)鍵調(diào)節(jié)因子。在這篇綜述中,我們將首先介紹核骨架的結(jié)構(gòu)元件,并討論當前關(guān)于核結(jié)構(gòu)和信號如何與環(huán)境和組織水平機械線索相關(guān)的改變的文獻。我們將專注于應(yīng)用機械力和方法的最先進的技術(shù),以結(jié)合活細胞中的 DNA、RNA 和蛋白質(zhì)可視化來測量核力學(xué)。最終,將實時核變形和染色質(zhì)動力學(xué)相結(jié)合可以成為研究力如何影響基因組功能動力學(xué)機制的有力工具。

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