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非特异性相互作用控制哺乳动物细胞中纳米物体的细胞质扩散。

Non-specific interactions govern cytosolic diffusion of nanosized objects in mammalian cells.

机构信息

Laboratoire Physico-Chimie, Institut Curie, CNRS UMR168, PSL Research University, Université Pierre et Marie Curie-Paris, Paris, France.

Center for Studies in Physics and Biology, The Rockefeller University, New York, NY, USA.

出版信息

Nat Mater. 2018 Aug;17(8):740-746. doi: 10.1038/s41563-018-0120-7. Epub 2018 Jul 2.

Abstract

The diffusivity of macromolecules in the cytoplasm of eukaryotic cells varies over orders of magnitude and dictates the kinetics of cellular processes. However, a general description that associates the Brownian or anomalous nature of intracellular diffusion to the architectural and biochemical properties of the cytoplasm has not been achieved. Here we measure the mobility of individual fluorescent nanoparticles in living mammalian cells to obtain a comprehensive analysis of cytoplasmic diffusion. We identify a correlation between tracer size, its biochemical nature and its mobility. Inert particles with size equal or below 50 nm behave as Brownian particles diffusing in a medium of low viscosity with negligible effects of molecular crowding. Increasing the strength of non-specific interactions of the nanoparticles within the cytoplasm gradually reduces their mobility and leads to subdiffusive behaviour. These experimental observations and the transition from Brownian to subdiffusive motion can be captured in a minimal phenomenological model.

摘要

真核细胞细胞质中大分子的扩散系数差异很大,这决定了细胞过程的动力学。然而,还没有一种普遍的描述能够将细胞内扩散的布朗运动或异常性质与细胞质的结构和生化特性联系起来。在这里,我们测量了活哺乳动物细胞中单个荧光纳米颗粒的迁移率,以获得对细胞质扩散的全面分析。我们发现示踪剂大小与其生化性质及其迁移率之间存在相关性。大小等于或小于 50nm 的惰性颗粒表现为布朗颗粒,在低粘度的介质中扩散,分子拥挤的影响可以忽略不计。随着纳米颗粒在细胞质中与非特异性相互作用强度的增加,其迁移率逐渐降低,导致亚扩散行为。这些实验观察结果以及从布朗运动到亚扩散运动的转变可以用一个最小的唯象模型来捕获。

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