Chang Fred, Feierbach Becket, Martin Sophie
Department of Microbiology, Columbia University College of Physicians and Surgeons, New York, NY 10032, USA.
Novartis Found Symp. 2005;269:59-66; discussion 66-72, 223-30.
It has been speculated that microtubule plus ends function to regulate the actin cytoskeleton in processes such as cytokinesis, cell polarization and cell migration. In the fission yeast Schizosaccharomyces pombe, interphase microtubules regulate cell polarity through proteins such as tea1p, a kelch repeat protein, and for3p, a formin that nucleates actin cable assembly at cell tips. Here, we review recent progress on understanding tea1p regulation and function. Microtubules may govern the localization of tea1p by transporting it on the plus ends of microtubules and depositing it directly onto the cell tip when the microtubule catastrophes. The interaction of tea1p with the CLIP170 protein tip1p is responsible for its localization at growing microtubule plus ends. Tea1p may regulate cell polarity by associating with large 'polarisome' complexes that include for3p. For3p is present at both cell tips, but is not on the microtubules. Tea1p is needed to localize the formin to establish polarized cell growth at cell tips that have not grown previously. These studies begin to elucidate a molecular pathway for how microtubules contribute to the proper spatial regulation of actin assembly and polarized cell growth.
据推测,微管正端在诸如胞质分裂、细胞极化和细胞迁移等过程中发挥作用,调节肌动蛋白细胞骨架。在裂殖酵母粟酒裂殖酵母中,间期微管通过诸如tea1p(一种kelch重复蛋白)和for3p(一种在细胞尖端启动肌动蛋白电缆组装的formin)等蛋白质来调节细胞极性。在此,我们综述了在理解tea1p调节和功能方面的最新进展。微管可能通过在微管正端运输tea1p并在微管发生灾变时将其直接沉积到细胞尖端来控制tea1p的定位。tea1p与CLIP170蛋白tip1p的相互作用负责其在生长中的微管正端的定位。tea1p可能通过与包括for3p在内的大型“极化体”复合物结合来调节细胞极性。For3p存在于两个细胞尖端,但不在微管上。需要tea1p来定位formin,以便在先前未生长的细胞尖端建立极化细胞生长。这些研究开始阐明微管如何促进肌动蛋白组装的正确空间调节和极化细胞生长的分子途径。