Department of Biology and Biotechnology, Worcester Polytechnic Institute, Worcester, MA, U.S.A.
Biochem Soc Trans. 2024 Apr 24;52(2):505-515. doi: 10.1042/BST20220783.
In eukaryotic cells, organelle and vesicle transport, positioning, and interactions play crucial roles in cytoplasmic organization and function. These processes are governed by intracellular trafficking mechanisms. At the core of that trafficking, the cytoskeleton and directional transport by motor proteins stand out as its key regulators. Plant cell tip growth is a well-studied example of cytoplasm organization by polarization. This polarization, essential for the cell's function, is driven by the cytoskeleton and its associated motors. This review will focus on myosin XI, a molecular motor critical for vesicle trafficking and polarized plant cell growth. We will center our discussion on recent data from the moss Physcomitrium patens and the liverwort Marchantia polymorpha. The biochemical properties and structure of myosin XI in various plant species are discussed, highlighting functional conservation across species. We further explore this conservation of myosin XI function in the process of vesicle transport in tip-growing cells. Existing evidence indicates that myosin XI actively organizes actin filaments in tip-growing cells by a mechanism based on vesicle clustering at their tips. A hypothetical model is presented to explain the essential function of myosin XI in polarized plant cell growth based on vesicle clustering at the tip. The review also provides insight into the in vivo localization and dynamics of myosin XI, emphasizing its role in cytosolic calcium regulation, which influences the polymerization of F-actin. Lastly, we touch upon the need for additional research to elucidate the regulation of myosin function.
在真核细胞中,细胞器和囊泡的运输、定位和相互作用对于细胞质的组织和功能起着至关重要的作用。这些过程受细胞内运输机制的调控。在这些运输机制中,细胞骨架和马达蛋白的定向运输是其关键的调节因子。植物细胞的顶端生长是细胞质通过极化进行组织的一个很好的例子。这种极化对于细胞的功能至关重要,是由细胞骨架及其相关的马达蛋白驱动的。本综述将重点介绍肌球蛋白 XI,它是一种对囊泡运输和极性植物细胞生长至关重要的分子马达。我们将以藓类植物Physcomitrium patens 和地钱 Marchantia polymorpha 的最新数据为中心进行讨论。本文讨论了不同植物物种中肌球蛋白 XI 的生化特性和结构,强调了物种间功能的保守性。我们进一步探讨了肌球蛋白 XI 在顶端生长细胞中囊泡运输过程中的功能保守性。现有证据表明,肌球蛋白 XI 通过一种基于囊泡在其顶端聚集的机制,在顶端生长的细胞中积极组织肌动蛋白丝。提出了一个假设模型,解释了肌球蛋白 XI 在极性植物细胞生长中的基本功能,基于囊泡在顶端的聚集。该综述还深入探讨了肌球蛋白 XI 的体内定位和动力学,强调了它在细胞质钙离子调节中的作用,钙离子调节影响 F-肌动蛋白的聚合。最后,我们提到需要进一步的研究来阐明肌球蛋白功能的调节。