Institute of Molecular Life Sciences, University of Zurich, Zurich 8057, Switzerland.
Molecular Life Sciences Graduate School, ETH and University of Zurich, Zurich 8057, Switzerland.
Viruses. 2011 Mar;3(3):233-253. doi: 10.3390/v3030233. Epub 2011 Mar 9.
Unlike transport vesicles or organelles, human adenovirus (HAdV) directly binds to the microtubule minus end-directed motor dynein for transport to the nucleus. The dynein cofactor dynactin enhances nuclear transport of HAdV and boosts infection. To determine if dynactin has a specific role in cytoplasmic trafficking of incoming HAdV on microtubules, we used live cell spinning disc confocal microscopy at 25 Hz acquisition frequency and automated tracking of single virus particles at 20-50 nm spatial resolution. Computational dissection by machine-learning algorithms extracted specific motion patterns of viral trajectories. We found that unperturbed cells supported two kinds of microtubule-dependent motions, directed motions (DM) and fast drifts (FD). DM had speeds of 0.2 to 2 μm/s and run lengths of 0.4 up to 7 μm, while FD were slower and less extensive at 0.02 to 0.4 μm/s and 0.05 to 2.5 μm. Dynactin interference by overexpression of p50/dynamitin or a coiled-coil domain of p150/Glued reduced the speeds and amounts of both center- and periphery-directed DM but not FD, and inhibited infection. These results indicate that dynactin enhances adenovirus infection by increasing the speed and efficiency of dynein-mediated virus motion to the nucleus, and, surprisingly, also supports a hereto unknown motor activity for virus transport to the cell periphery.
与运输小泡或细胞器不同,人腺病毒 (HAdV) 直接结合到微管负向驱动蛋白 dynein 上,以将其运输到细胞核。动力蛋白共因子 dynactin 增强了 HAdV 的核转运并促进了感染。为了确定 dynactin 是否在微管上 incoming HAdV 的细胞质运输中具有特定作用,我们使用 25 Hz 采集频率的活细胞旋转盘共聚焦显微镜和 20-50nm 空间分辨率的单个病毒颗粒自动跟踪,通过机器学习算法对计算进行分割,提取病毒轨迹的特定运动模式。我们发现,未受干扰的细胞支持两种微管依赖性运动,定向运动 (DM) 和快速漂移 (FD)。DM 的速度为 0.2 至 2 μm/s,运行长度为 0.4 至 7 μm,而 FD 速度较慢,范围较小,为 0.02 至 0.4 μm/s 和 0.05 至 2.5 μm。通过过表达 p50/dynamitin 或 p150/Glued 的卷曲螺旋结构域干扰 dynactin,降低了中心和外围定向 DM 的速度和数量,但不影响 FD,并且抑制了感染。这些结果表明,dynactin 通过增加 dynein 介导的病毒向细胞核运动的速度和效率来增强腺病毒感染,并且令人惊讶的是,还支持病毒向细胞外围运输的未知的运动活性。