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保守的顶复门极光激酶TgArk3参与内二分裂、复制速率和寄生虫毒力。

The conserved apicomplexan Aurora kinase TgArk3 is involved in endodyogeny, duplication rate and parasite virulence.

作者信息

Berry Laurence, Chen Chun-Ti, Reininger Luc, Carvalho Teresa G, El Hajj Hiba, Morlon-Guyot Juliette, Bordat Yann, Lebrun Maryse, Gubbels Marc-Jan, Doerig Christian, Daher Wassim

机构信息

Dynamique des Interactions Membranaires Normales et Pathologiques, UMR5235 CNRS, Université Montpellier, Montpellier, France.

Department of Biology, Boston College, Chestnut Hill, MA 02467, USA.

出版信息

Cell Microbiol. 2016 Aug;18(8):1106-1120. doi: 10.1111/cmi.12571. Epub 2016 Feb 22.

Abstract

Aurora kinases are eukaryotic serine/threonine protein kinases that regulate key events associated with chromatin condensation, centrosome and spindle function and cytokinesis. Elucidating the roles of Aurora kinases in apicomplexan parasites is crucial to understand the cell cycle control during Plasmodium schizogony or Toxoplasma endodyogeny. Here, we report on the localization of two previously uncharacterized Toxoplasma Aurora-related kinases (Ark2 and Ark3) in tachyzoites and of the uncharacterized Ark3 orthologue in Plasmodium falciparum erythrocytic stages. In Toxoplasma gondii, we show that TgArk2 and TgArk3 concentrate at specific sub-cellular structures linked to parasite division: the mitotic spindle and intranuclear mitotic structures (TgArk2), and the outer core of the centrosome and the budding daughter cells cytoskeleton (TgArk3). By tagging the endogenous PfArk3 gene with the green fluorescent protein in live parasites, we show that PfArk3 protein expression peaks late in schizogony and localizes at the periphery of budding schizonts. Disruption of the TgArk2 gene reveals no essential function for tachyzoite propagation in vitro, which is surprising giving that the P. falciparum and P. berghei orthologues are essential for erythrocyte schizogony. In contrast, knock-down of TgArk3 protein results in pronounced defects in parasite division and a major growth deficiency. TgArk3-depleted parasites display several defects, such as reduced parasite growth rate, delayed egress and parasite duplication, defect in rosette formation, reduced parasite size and invasion efficiency and lack of virulence in mice. Our study provides new insights into cell cycle control in Toxoplasma and malaria parasites and highlights Aurora kinase 3 as potential drug target.

摘要

极光激酶是真核生物的丝氨酸/苏氨酸蛋白激酶,可调节与染色质凝聚、中心体和纺锤体功能以及胞质分裂相关的关键事件。阐明极光激酶在顶复门寄生虫中的作用对于理解疟原虫裂殖生殖或弓形虫内二分裂期间的细胞周期控制至关重要。在此,我们报告了两种先前未表征的弓形虫极光相关激酶(Ark2和Ark3)在速殖子中的定位以及恶性疟原虫红细胞期未表征的Ark3直系同源物的定位。在刚地弓形虫中,我们发现TgArk2和TgArk3集中在与寄生虫分裂相关的特定亚细胞结构上:有丝分裂纺锤体和核内有丝分裂结构(TgArk2),以及中心体的外核心和出芽子细胞的细胞骨架(TgArk3)。通过在活寄生虫中用绿色荧光蛋白标记内源性PfArk3基因,我们发现PfArk3蛋白表达在裂殖生殖后期达到峰值,并定位于出芽裂殖体的周边。TgArk2基因的破坏显示其对速殖子在体外繁殖没有必需功能,鉴于恶性疟原虫和伯氏疟原虫的直系同源物对红细胞裂殖生殖是必需的,这一结果令人惊讶。相反,TgArk3蛋白的敲低导致寄生虫分裂出现明显缺陷和严重的生长缺陷。TgArk3缺失的寄生虫表现出多种缺陷,如寄生虫生长速率降低、逸出和寄生虫复制延迟、玫瑰花结形成缺陷、寄生虫大小和侵袭效率降低以及在小鼠中缺乏毒力。我们的研究为弓形虫和疟原虫的细胞周期控制提供了新的见解,并突出了极光激酶3作为潜在的药物靶点。

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