Key Laboratory of Analytical Chemistry for Biology and Medicine (Ministry of Education), College of Chemistry and Molecular Sciences, State Key Laboratory of Virology and Wuhan Institute of Biotechnology, Wuhan University, Wuhan, 430072, P. R. China.
Small. 2014 Nov;10(22):4746-53. doi: 10.1002/smll.201400944. Epub 2014 Jun 27.
Three-dimensional (3D) single-particle tracking (SPT) techniques have been widely reported. However, the 3D SPT technique remains poorly used for solving actual biological problems. In this work, a quantum dots (QDs)-based single-particle tracking technique is utilized to explore the Rab5- and Rab7-associated infection behaviors of influenza virus in three dimensions with a set of easily-attained equipment by the fast and accurate centroid method for 3D SPT. The experimental results indicate that Rab5 protein takes part in the virus infection process from the cell periphery to the perinuclear region, while Rab7 protein is mainly involved in the intermittent and confined movements of the virus in the perinuclear region. Evidently, the transition process of the virus-containing vesicles from early to late endosomes might occur during the intermittent movement in the perinuclear region. These findings reveal distinct dynamic behaviors of Rab5- and Rab7-positive endosomes in the course of the intracellular transport of viruses. This work is helpful in understanding the intracellular transport of cargoes.
三维(3D)单粒子跟踪(SPT)技术已被广泛报道。然而,3D SPT 技术在解决实际生物学问题方面的应用仍然很差。在这项工作中,利用量子点(QDs)-基于单粒子跟踪技术,通过快速准确的 3D SPT 质心法,利用一组易于获得的设备,从细胞边缘到核周区,探索流感病毒 Rab5 和 Rab7 相关感染行为。实验结果表明,Rab5 蛋白参与病毒从细胞边缘到核周区的感染过程,而 Rab7 蛋白主要参与病毒在核周区的间歇性和受限运动。显然,在核周区的间歇性运动过程中,可能会发生含有病毒的囊泡从早期到晚期内体的转变过程。这些发现揭示了 Rab5 和 Rab7 阳性内体在病毒细胞内运输过程中的不同动态行为。这项工作有助于理解货物的细胞内运输。