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初级纤毛:阻止细胞分裂的精巧结构?

Primary cilium: an elaborate structure that blocks cell division?

机构信息

The Sperm Laboratory, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

The Sperm Laboratory, College of Life Sciences, Zhejiang University, Hangzhou 310058, China.

出版信息

Gene. 2014 Sep 1;547(2):175-85. doi: 10.1016/j.gene.2014.06.050. Epub 2014 Jun 24.

Abstract

A primary cilium is a microtubule-based membranous protrusion found in almost all cell types. A primary cilium has a "9+0" axoneme that distinguishes this ancient organelle from the canonical motile "9+2" cilium. A primary cilium is the sensory center of the cell that regulates cell proliferation and embryonic development. The primary ciliary pocket is a specialized endocytic membrane domain in the basal region. The basal body of a primary cilium exists as a form of the centriole during interphase of the cell cycle. Although conventional thinking suggests that the cell cycle regulates centrosomal changes, recent studies suggest the opposite, that is, centrosomal changes regulate the cell cycle. In this regard, centrosomal kinase Aurora kinase A (AurA), Polo-like kinase 1 (Plk1), and NIMA related Kinase (Nek or Nrk) propel cell cycle progression by promoting primary cilia disassembly which indicates a non-mitotic function. However, the persistence of primary cilia during spermatocyte division challenges the dominate idea of the incompatibility of primary cilia and cell division. In this review, we demonstrate the detailed structure of primary cilia and discuss the relationship between primary cilia disassembly and cell cycle progression on the background of various mitotic kinases.

摘要

纤毛是一种几乎存在于所有细胞类型中的微管膜状突起。纤毛具有“9+0”轴丝,这将这个古老的细胞器与典型的运动“9+2”纤毛区分开来。纤毛是细胞的感觉中心,调节细胞增殖和胚胎发育。初级纤毛口袋是基底区域的一种特殊的内吞膜结构域。在细胞周期的间期,初级纤毛的基体作为中心体的一种形式存在。尽管传统观点认为细胞周期调节中心体的变化,但最近的研究表明相反的情况,即中心体的变化调节细胞周期。在这方面,中心体激酶 Aurora 激酶 A (AurA)、Polo 样激酶 1 (Plk1) 和 NIMA 相关激酶 (Nek 或 Nrk) 通过促进初级纤毛解体来推动细胞周期的进展,这表明了一种非有丝分裂的功能。然而,精母细胞分裂过程中初级纤毛的持续存在挑战了初级纤毛和细胞分裂不相容的主导观点。在这篇综述中,我们展示了初级纤毛的详细结构,并在各种有丝分裂激酶的背景下讨论了初级纤毛解体与细胞周期进程之间的关系。

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