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Dynamic Clustering of Dyneins on Axonal Endosomes: Evidence from High-Speed Darkfield Imaging

机译:动力蛋白在轴突内体上的动态聚类:高速暗场成像的证据。

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摘要

One of the fundamental features that govern the cooperativity of multiple dyneins during cargo trafficking in cells is the spatial distribution of these dyneins on the cargo. Geometric considerations and recent experiments indicate that clustered distributions of dyneins are required for effective cooperation on micron-sized cargos. However, very little is known about the spatial distribution of dyneins and their cooperativity on smaller cargos, such as vesicles or endosomes <200 nm in size, which are not amenable to conventional immunostaining and optical trapping methods. In this work, we present evidence that dyneins can dynamically be clustered on endosomes in response to load. Using a darkfield imaging assay, we measured the repeated stalls and detachments of retrograde axonal endosomes under load with <10 nm localization accuracy at imaging rates up to 1 kHz for over a timescale of minutes. A three-dimensional stochastic model was used to simulate the endosome motility under load to gain insights on the mechanochemical properties and spatial distribution of dyneins on axonal endosomes. Our results indicate that 1) the distribution of dyneins on endosomes is fluid enough to support dynamic clustering under load and 2) the detachment kinetics of dynein on endosomes differs significantly from the in vitro measurements possibly due to an increase in the unitary stall force of dynein on endosomes.
机译:控制细胞内货物运输过程中多种动力蛋白协同作用的基本特征之一是这些动力蛋白在货物上的空间分布。几何方面的考虑和最近的实验表明,在微米级货物上进行有效合作需要动力蛋白的聚集分布。然而,关于动力蛋白的空间分布及其在较小货物上的协同作用知之甚少,例如体积小于200 nm的囊泡或内体,它们不适合传统的免疫染色和光学捕获方法。在这项工作中,我们提供证据表明动力蛋白可以动态响应负载而聚集在内涵体上。使用暗场成像测定法,我们在几分钟内以高达1kHz的成像速率在<10 nm的定位精度下测量了负载下逆行轴突内体的重复失速和脱离。使用三维随机模型模拟负载下的内体动力,以深入了解轴突内体上动力蛋白的力学化学性质和空间分布。我们的结果表明,1)动力蛋白在内涵体上的分布足以支持负载下的动态聚类; 2)动力蛋白在内涵体上的分离动力学与体外测量结果明显不同,可能是由于动力蛋白的单位失速力增加所致在内体上。

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