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Probing the Stochastic, Motor-Driven Properties of the Cytoplasm Using Force Spectrum Microscopy

机译:使用力谱显微镜探测细胞质的随机,电机驱动特性

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摘要

Molecular motors in cells typically produce highly directed motion; however, the aggregate, incoherent effect of all active processes also creates randomly fluctuating forces, which drive diffusive-like, nonthermal motion. Here, we introduce force-spectrum-microscopy (FSM) to directly quantify random forces within the cytoplasm of cells and thereby probe stochastic motor activity. This technique combines measurements of the random motion of probe particles with independent micromechanical measurements of the cytoplasm to quantify the spectrum of force fluctuations. Using FSM, we show that force fluctuations substantially enhance intracellular movement of small and large components. The fluctuations are three times larger in malignant cells than in their benign counterparts. We further demonstrate that vimentin acts globally to anchor organelles against randomly fluctuating forces in the cytoplasm, with no effect on their magnitude. Thus, FSM has broad applications for understanding the cytoplasm and its intracellular processes in relation to cell physiology in healthy and diseased states.
机译:细胞中的分子马达通常会产生高度定向的运动。但是,所有活动过程的总的,不连贯的作用也会产生随机波动的力,从而驱动类似扩散的非热运动。在这里,我们介绍了力谱显微镜(FSM),以直接量化细胞质中的随机力,从而探测随机运动活动。该技术将对探针颗粒随机运动的测量与对细胞质的独立微机械测量相结合,以量化力波动的频谱。使用FSM,我们显示力的波动实质上增强了大小组件的细胞内运动。恶性细胞中的波动比良性细胞中的波动大三倍。我们进一步证明波形蛋白在全球范围内发挥作用,以锚定细胞器抵抗细胞质中的随机波动力,而对其大小没有影响。因此,FSM在了解健康和患病状态下细胞质及其与细胞生理学相关的细胞内过程方面具有广泛的应用。

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