Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, MA 01609, USA.
Department of Physics, Worcester Polytechnic Institute, Worcester, MA 01609, USA.
J Cell Sci. 2020 Feb 26;133(4):jcs234682. doi: 10.1242/jcs.234682.
The actin cytoskeleton and active membrane trafficking machinery are essential for polarized cell growth. To understand the interactions between myosin XI, vesicles and actin filaments , we performed fluorescence recovery after photobleaching and showed that the dynamics of myosin XIa at the tip of the spreading earthmoss caulonemal cells are actin-dependent and that 50% of myosin XI is bound to vesicles. To obtain single-particle information, we used variable-angle epifluorescence microscopy in protoplasts to demonstrate that protein myosin XIa and VAMP72-labeled vesicles localize in time and space over periods lasting only a few seconds. By tracking data with Hidden Markov modeling, we showed that myosin XIa and VAMP72-labeled vesicles exhibit short runs of actin-dependent directed transport. We also found that the interaction of myosin XI with vesicles is short-lived. Together, this vesicle-bound fraction, fast off-rate and short average distance traveled seem be crucial for the dynamic oscillations observed at the tip, and might be vital for regulation and recycling of the exocytosis machinery, while simultaneously promoting vesicle focusing and vesicle secretion at the tip, necessary for cell wall expansion.
肌动蛋白细胞骨架和活跃的膜运输机制对于细胞的极化生长至关重要。为了理解肌球蛋白 XI、囊泡和肌动蛋白丝之间的相互作用,我们进行了光漂白后荧光恢复实验,并表明在扩散地钱 caulonemal 细胞的尖端,肌球蛋白 XIa 的动力学是依赖于肌动蛋白的,并且有 50%的肌球蛋白 XI 与囊泡结合。为了获得单颗粒信息,我们在原生质体中使用变角荧光显微镜证明,肌球蛋白 XIa 和 VAMP72 标记的囊泡在仅持续几秒钟的时间内进行时空定位。通过用隐马尔可夫模型对跟踪数据进行分析,我们发现肌球蛋白 XIa 和 VAMP72 标记的囊泡表现出短时间的、依赖肌动蛋白的定向运输。我们还发现肌球蛋白 XI 与囊泡的相互作用是短暂的。总的来说,囊泡结合部分、快速的脱离率和平均移动距离较短,这似乎对于在尖端观察到的动态振荡至关重要,对于胞吐机制的调节和循环也至关重要,同时促进了尖端处囊泡的聚集和分泌,这对于细胞壁的扩张是必要的。