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快速升温诱导的离体细胞核的体积转变

Volume Transitions of Isolated Cell Nuclei Induced by Rapid Temperature Increase.

作者信息

Chan Chii J, Li Wenhong, Cojoc Gheorghe, Guck Jochen

机构信息

Cavendish Laboratory, Department of Physics, University of Cambridge, Cambridge, United Kingdom; Biotechnology Center, Technische Universität Dresden, Dresden, Germany.

Biotechnology Center, Technische Universität Dresden, Dresden, Germany.

出版信息

Biophys J. 2017 Mar 28;112(6):1063-1076. doi: 10.1016/j.bpj.2017.01.022.

Abstract

Understanding the physical mechanisms governing nuclear mechanics is important as it can impact gene expression and development. However, how cell nuclei respond to external cues such as heat is not well understood. Here, we studied the material properties of isolated nuclei in suspension using an optical stretcher. We demonstrate that isolated nuclei regulate their volume in a highly temperature-sensitive manner. At constant temperature, isolated nuclei behaved like passive, elastic and incompressible objects, whose volume depended on the pH and ionic conditions. When the temperature was increased suddenly by even a few degrees Kelvin, nuclei displayed a repeatable and reversible temperature-induced volume transition, whose sign depended on the valency of the solvent. Such phenomenon is not observed for nuclei subjected to slow heating. The transition temperature could be shifted by adiabatic changes of the ambient temperature, and the magnitude of temperature-induced volume transition could be modulated by modifying the chromatin compaction state and remodeling processes. Our findings reveal that the cell nucleus can be viewed as a highly charged polymer gel with intriguing thermoresponsive properties, which might play a role in nuclear volume regulation and thermosensing in living cells.

摘要

了解控制核力学的物理机制很重要,因为它会影响基因表达和发育。然而,细胞核如何响应诸如热等外部信号尚不清楚。在这里,我们使用光镊研究了悬浮液中分离细胞核的材料特性。我们证明,分离的细胞核以高度温度敏感的方式调节其体积。在恒定温度下,分离的细胞核表现得像被动、弹性和不可压缩的物体,其体积取决于pH值和离子条件。当温度突然升高甚至几开尔文时,细胞核会表现出可重复且可逆的温度诱导体积转变,其转变方向取决于溶剂的价态。对于缓慢加热的细胞核,未观察到这种现象。转变温度可通过环境温度的绝热变化而改变,温度诱导体积转变的幅度可通过改变染色质压缩状态和重塑过程来调节。我们的研究结果表明,细胞核可被视为具有有趣热响应特性的高电荷聚合物凝胶,这可能在活细胞的核体积调节和热传感中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a1b/5374986/bb9d1a7ea235/gr1.jpg

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