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真核细胞的胞质分裂:沟复杂度一览

Cytokinesis in Eukaryotic Cells: The Furrow Complexity at a Glance.

机构信息

Dipartimento di Biotecnologie e Bioscienze, Università degli Studi di Milano-Bicocca, Piazza della Scienza 2, 20126 Milano, Italy.

出版信息

Cells. 2020 Jan 22;9(2):271. doi: 10.3390/cells9020271.

Abstract

The duplication cycle is the fascinating process that, starting from a cell, results in the formation of two daughter cells and it is essential for life. Cytokinesis is the final step of the cell cycle, it is a very complex phase, and is a concert of forces, remodeling, trafficking, and cell signaling. All of the steps of cell division must be properly coordinated with each other to faithfully segregate the genetic material and this task is fundamental for generating viable cells. Given the importance of this process, molecular pathways and proteins that are involved in cytokinesis are conserved from yeast to humans. In this review, we describe symmetric and asymmetric cell division in animal cell and in a model organism, budding yeast. In addition, we illustrate the surveillance mechanisms that ensure a proper cell division and discuss the connections with normal cell proliferation and organs development and with the occurrence of human diseases.

摘要

细胞周期是一个引人入胜的过程,它从一个细胞开始,最终形成两个子细胞,这对生命来说是至关重要的。胞质分裂是细胞周期的最后一步,它是一个非常复杂的阶段,是力、重塑、运输和细胞信号的协同作用。细胞分裂的所有步骤都必须彼此协调,以忠实分离遗传物质,这一任务对于产生有活力的细胞是至关重要的。鉴于这个过程的重要性,参与胞质分裂的分子途径和蛋白质在从酵母到人类的生物中是保守的。在这篇综述中,我们描述了动物细胞和模式生物芽殖酵母中的对称和不对称细胞分裂。此外,我们还说明了确保细胞正确分裂的监控机制,并讨论了与正常细胞增殖、器官发育以及人类疾病发生的联系。

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