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疟原虫P型细胞周期蛋白CYC3在蚊子卵囊发育过程中调节核内有丝分裂生长。

Plasmodium P-Type Cyclin CYC3 Modulates Endomitotic Growth during Oocyst Development in Mosquitoes.

作者信息

Roques Magali, Wall Richard J, Douglass Alexander P, Ramaprasad Abhinay, Ferguson David J P, Kaindama Mbinda L, Brusini Lorenzo, Joshi Nimitray, Rchiad Zineb, Brady Declan, Guttery David S, Wheatley Sally P, Yamano Hiroyuki, Holder Anthony A, Pain Arnab, Wickstead Bill, Tewari Rita

机构信息

School of Life Sciences, Queens Medical Centre, University of Nottingham, Nottingham, United Kingdom.

Biological and Environmental Sciences and Engineering (BESE) Division, King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia.

出版信息

PLoS Pathog. 2015 Nov 13;11(11):e1005273. doi: 10.1371/journal.ppat.1005273. eCollection 2015 Nov.

Abstract

Cell-cycle progression and cell division in eukaryotes are governed in part by the cyclin family and their regulation of cyclin-dependent kinases (CDKs). Cyclins are very well characterised in model systems such as yeast and human cells, but surprisingly little is known about their number and role in Plasmodium, the unicellular protozoan parasite that causes malaria. Malaria parasite cell division and proliferation differs from that of many eukaryotes. During its life cycle it undergoes two types of mitosis: endomitosis in asexual stages and an extremely rapid mitotic process during male gametogenesis. Both schizogony (producing merozoites) in host liver and red blood cells, and sporogony (producing sporozoites) in the mosquito vector, are endomitotic with repeated nuclear replication, without chromosome condensation, before cell division. The role of specific cyclins during Plasmodium cell proliferation was unknown. We show here that the Plasmodium genome contains only three cyclin genes, representing an unusual repertoire of cyclin classes. Expression and reverse genetic analyses of the single Plant (P)-type cyclin, CYC3, in the rodent malaria parasite, Plasmodium berghei, revealed a cytoplasmic and nuclear location of the GFP-tagged protein throughout the lifecycle. Deletion of cyc3 resulted in defects in size, number and growth of oocysts, with abnormalities in budding and sporozoite formation. Furthermore, global transcript analysis of the cyc3-deleted and wild type parasites at gametocyte and ookinete stages identified differentially expressed genes required for signalling, invasion and oocyst development. Collectively these data suggest that cyc3 modulates oocyst endomitotic development in Plasmodium berghei.

摘要

真核生物中的细胞周期进程和细胞分裂部分受细胞周期蛋白家族及其对细胞周期蛋白依赖性激酶(CDK)的调控。细胞周期蛋白在酵母和人类细胞等模型系统中已得到很好的表征,但令人惊讶的是,对于导致疟疾的单细胞原生动物寄生虫疟原虫中细胞周期蛋白的数量及其作用却知之甚少。疟原虫的细胞分裂和增殖与许多真核生物不同。在其生命周期中,它经历两种有丝分裂类型:无性阶段的核内有丝分裂和雄配子体形成过程中极其快速的有丝分裂过程。在宿主肝脏和红细胞中的裂体生殖(产生裂殖子)以及在蚊媒中的孢子生殖(产生子孢子)都是核内有丝分裂,在细胞分裂前有重复的核复制,而没有染色体浓缩。特定细胞周期蛋白在疟原虫细胞增殖过程中的作用尚不清楚。我们在此表明,疟原虫基因组仅包含三个细胞周期蛋白基因,代表了不同寻常的细胞周期蛋白类别。对啮齿动物疟原虫伯氏疟原虫中单个植物(P)型细胞周期蛋白CYC3进行的表达和反向遗传分析显示,整个生命周期中绿色荧光蛋白标记的蛋白定位于细胞质和细胞核。cyc3的缺失导致卵囊的大小、数量和生长出现缺陷,在出芽和子孢子形成方面存在异常。此外,对配子体和动合子阶段的cyc3缺失型和野生型寄生虫进行的全局转录分析确定了信号传导、入侵和卵囊发育所需的差异表达基因。这些数据共同表明,cyc3调节伯氏疟原虫卵囊的核内有丝分裂发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1343/4643991/1946be56c2fc/ppat.1005273.g001.jpg

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