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The centriole duplication cycle

机译:中心粒复制周期

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摘要

Centrosomes are the main microtubule-organizing centre of animal cells and are important for many critical cellular and developmental processes from cell polarization to cell division. At the core of the centrosome are centrioles, which recruit pericentriolar material to form the centrosome and act as basal bodies to nucleate formation of cilia and flagella. Defects in centriole structure, function and number are associated with a variety of human diseases, including cancer, brain diseases and ciliopathies. In this review, we discuss recent advances in our understanding of how new centrioles are assembled and how centriole number is controlled. We propose a general model for centriole duplication control in which cooperative binding of duplication factors defines a centriole 'origin of duplication' that initiates duplication, and passage through mitosis effects changes that license the centriole for a new round of duplication in the next cell cycle. We also focus on variations on the general theme in which many centrioles are created in a single cell cycle, including the specialized structures associated with these variations, the deuterosome in animal cells and the blepharoplast in lower plant cells.
机译:中心体是动物细胞的主要微管组织中心,对于从细胞极化到细胞分裂的许多关键细胞和发育过程都至关重要。中心体的核心是中心体,中心体吸收中心体周围的物质以形成中心体,并充当基础体,使纤毛和鞭毛形成核。中心体结构,功能和数量的缺陷与多种人类疾病有关,包括癌症,脑病和纤毛病。在这篇综述中,我们讨论了在了解如何组装新中心粒以及如何控制中心粒数量方面的最新进展。我们提出了一个中心粒复制控制的通用模型,其中复制因子的协同结合定义了起始复制的中心粒“复制起点”,并且通过有丝分裂效应的改变使该中心粒在下一细胞周期中获得了新一轮的复制。我们还将重点放在一般主题上的变异上,即在单个细胞周期中产生许多中心粒,包括与这些变异相关的特殊结构,动物细胞中的氘核体和下部植物细胞中的原生质体。

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