Instituto de Investigação e Inovação em Saúde - i3S, Universidade do Porto, 4200-135 Porto, Portugal.
Instituto de Biologia Molecular e Celular - IBMC, Universidade do Porto, 4200-135 Porto, Portugal.
J Cell Sci. 2023 Mar 1;136(5). doi: 10.1242/jcs.220269. Epub 2023 Mar 2.
The microtubule minus-end-directed motility of cytoplasmic dynein 1 (dynein), arguably the most complex and versatile cytoskeletal motor, is harnessed for diverse functions, such as long-range organelle transport in neuronal axons and spindle assembly in dividing cells. The versatility of dynein raises a number of intriguing questions, including how is dynein recruited to its diverse cargo, how is recruitment coupled to activation of the motor, how is motility regulated to meet different requirements for force production and how does dynein coordinate its activity with that of other microtubule-associated proteins (MAPs) present on the same cargo. Here, these questions will be discussed in the context of dynein at the kinetochore, the supramolecular protein structure that connects segregating chromosomes to spindle microtubules in dividing cells. As the first kinetochore-localized MAP described, dynein has intrigued cell biologists for more than three decades. The first part of this Review summarizes current knowledge about how kinetochore dynein contributes to efficient and accurate spindle assembly, and the second part describes the underlying molecular mechanisms and highlights emerging commonalities with dynein regulation at other subcellular sites.
细胞质动力蛋白 1(dynein)的微管负端定向运动,它是最复杂和多功能的细胞骨架马达,被用于多种功能,例如神经元轴突中的长程细胞器运输和分裂细胞中的纺锤体组装。dynein 的多功能性引发了许多有趣的问题,包括 dynein 如何被招募到其不同的货物上,招募如何与马达的激活相耦合,运动如何被调节以满足产生力的不同要求,以及 dynein 如何与存在于同一货物上的其他微管相关蛋白 (MAP) 的活动相协调。在这里,这些问题将在有丝分裂细胞中连接分离染色体与纺锤体微管的超分子蛋白质结构——着丝粒的背景下进行讨论。作为第一个被描述的着丝粒定位的 MAP,dynein 已经引起了细胞生物学家三十多年的兴趣。这篇综述的第一部分总结了目前关于着丝粒 dynein 如何有助于有效和准确的纺锤体组装的知识,第二部分描述了潜在的分子机制,并强调了与其他亚细胞部位 dynein 调节的新兴共性。