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细胞周期与刚地弓形虫的细胞分裂:紧密相连还是松散拼接?

The cell cycle and Toxoplasma gondii cell division: tightly knit or loosely stitched?

作者信息

Gubbels Marc-Jan, White Michael, Szatanek Tomasz

机构信息

Department of Biology, Boston College, 355 Higgins Hall, 140 Commonwealth Avenue, Chestnut Hill, MA 02467, USA.

出版信息

Int J Parasitol. 2008 Oct;38(12):1343-58. doi: 10.1016/j.ijpara.2008.06.004. Epub 2008 Jul 24.

Abstract

The flexibility displayed by apicomplexan parasites to vary their mode of replication has intrigued biologists since their discovery by electron microscopy in the 1960s and 1970s. Starting in the 1990s we began to understand the cell biology of the cytoskeleton elements driving cytokinesis. By contrast, the molecular mechanisms that regulate the various division modes and how they translate into the budding process that uniquely characterizes this parasite family are much less understood. Although growth mechanisms are a neglected area of study, it is an important pathogenic parameter as fast division rounds are associated with fulminant infection whereas slower growth attenuates virulence, as is exploited in some vaccine strains. In this review we summarize a recent body of cell biological experiments that are rapidly leading to an understanding of the events that yield successful mitosis and cytokinesis in Toxoplasma. We place these observations within a cell cycle context with comments on how these events may be regulated by known eukaryotic checkpoints active in fission and budding yeasts as well as mammalian cells. The presence of cell cycle control mechanisms in the Apicomplexa is supported by our findings that identify several cell cycle checkpoints in Toxoplasma. The progress of the cell cycle is ultimately controlled by cyclin-Cdk pair activities, which are present throughout the Apicomplexa. Although many of the known controllers of cyclin-Cdk activity are present, several key controls cannot readily be identified, suggesting that apicomplexan parasites deviate at these points from the higher eukaryotic models. Altogether, new insights in Toxoplasma replication are reciprocally applied to hypothesize how other division modes in the Toxoplasma life cycle and in other Apicomplexa species could be controlled in terms of cell cycle checkpoint regulation.

摘要

自20世纪60年代和70年代通过电子显微镜发现顶复门寄生虫以来,它们在复制模式上表现出的灵活性一直吸引着生物学家。从20世纪90年代开始,我们开始了解驱动胞质分裂的细胞骨架元件的细胞生物学。相比之下,调节各种分裂模式的分子机制以及它们如何转化为该寄生虫家族独特的出芽过程则知之甚少。尽管生长机制是一个被忽视的研究领域,但它是一个重要的致病参数,因为快速的分裂周期与暴发性感染相关,而生长较慢则会减弱毒力,一些疫苗菌株就是利用了这一点。在这篇综述中,我们总结了最近一系列细胞生物学实验,这些实验正迅速使我们了解在弓形虫中产生成功的有丝分裂和胞质分裂的事件。我们将这些观察结果置于细胞周期背景下,并评论这些事件可能如何受到在裂殖酵母、出芽酵母以及哺乳动物细胞中活跃的已知真核检查点的调节。我们在弓形虫中发现了几个细胞周期检查点,这支持了顶复门存在细胞周期控制机制的观点。细胞周期的进程最终由细胞周期蛋白 - 细胞周期蛋白依赖性激酶(cyclin - Cdk)对的活性控制,它们存在于整个顶复门中。尽管存在许多已知的细胞周期蛋白 - Cdk活性控制器,但几个关键控制因素尚不能轻易确定,这表明顶复门寄生虫在这些方面偏离了高等真核生物模型。总之,对弓形虫复制新的见解相互应用,以推测在细胞周期检查点调节方面,弓形虫生命周期中的其他分裂模式以及其他顶复门物种的分裂模式是如何被控制的。

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