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通过单颗粒追踪揭示微管依赖性慢导向运动。

Revealing Microtubule-Dependent Slow-Directed Motility by Single-Particle Tracking.

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, People's Republic of China.

College of Chemistry, Nankai University, Tianjin 300071, People's Republic of China.

出版信息

Anal Chem. 2021 Mar 30;93(12):5211-5217. doi: 10.1021/acs.analchem.0c05377. Epub 2021 Mar 17.

Abstract

Microtubules (MTs) are the main component of cytoskeletons, providing long tracks for cargo trafficking across the cytoplasm. In the past years, transport along MTs was frequently reported to be rapid directed motions with speeds of several micrometers per second, but is that all the truth? Using single-particle tracking, we roundly and precisely analyzed the dynamic behaviors of three kinds of cargoes transported along MTs in two types of cells. It was found that during the transport processes, the directed motions of the cargoes were frequently interrupted by nondirected motions which greatly reduced the translocation rate toward the nucleus. What is more, in addition to the widely reported rapid directed motions, a type of directed motions with most speeds below 0.5 μm/s occurred more frequently. On the whole, these slow directed motions took longer than the rapid directed motions and resulted in displacements same as those of the rapid ones. To sum up, while travelling along MTs toward the cell interior, endocytosed cargoes moved alternately in rapid-directed, slow-directed and nondirected modes. In this process, the rapid- and the slow-directed motions contributed almost equally to the cargoes' translocation. This work provides original insights into the transport on MTs, facilitating a more comprehensive understanding of intracellular trafficking.

摘要

微管(MTs)是细胞骨架的主要组成部分,为细胞质内货物运输提供长轨道。在过去的几年中,沿着 MTs 的运输经常被报道为快速的定向运动,速度可达每秒数微米,但这就是全部事实吗?通过单颗粒追踪,我们全面、准确地分析了两种细胞中三种货物沿着 MTs 运输的动态行为。结果发现,在运输过程中,货物的定向运动经常被无定向运动打断,这大大降低了向核的转运率。更重要的是,除了广泛报道的快速定向运动外,还经常发生一种速度大多低于 0.5μm/s 的定向运动。总的来说,这些缓慢的定向运动比快速定向运动花费的时间更长,导致的位移与快速定向运动相同。总之,在沿着 MTs 向细胞内部运输的过程中,内吞的货物会在快速定向、缓慢定向和无定向模式之间交替移动。在这个过程中,快速和缓慢定向运动对货物的转运贡献几乎相等。这项工作为 MTs 上的运输提供了新的见解,有助于更全面地理解细胞内运输。

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