Sugi Tatsuki, Kato Kentaro, Kobayashi Kyousuke, Pandey Kishor, Takemae Hitoshi, Kurokawa Hitomi, Tohya Yukinobu, Akashi Hiroomi
Department of Veterinary Microbiology, Graduate School of Agricultural and Life Sciences, The University of Tokyo, Tokyo, Japan.
Parasitol Int. 2009 Dec;58(4):416-23. doi: 10.1016/j.parint.2009.08.005. Epub 2009 Aug 20.
Ca(2+) signaling is thought to play an important role in Toxoplasma gondii motility, including invasion of and egress from host cells. Recently, it has been reported that phosphorylation of the glideosome apparatus components of T. gondii occurs during invasion. To elucidate the role of T. gondii calmodulin-like domain protein kinase in the signaling pathway that bridges Ca(2+) stimulation and motility, we characterized T. gondii calmodulin-like domain protein kinase isoform 3 (TgCDPKif3). TgCDPKif3 is homologous to Plasmodium falciparum calcium-dependent protein kinase 1, which has been reported to phosphorylate P. falciparum glideosome components. TgCDPKif3 was purified as a fusion protein that was labeled with [gamma-(32)P]ATP, and the label was subsequently removed by phosphatase treatment. Phosphorylation was eliminated when the putative catalytic lysine residue of TgCDPKif3 was replaced with alanine. TgCDPKif3 phosphorylated Histone II(AS) as a representative substrate in a Ca(2+)-dependent manner at a high Ca(2+) concentration. TgCDPKif3 was localized to the apical ends of tachyzoites. TgCDPKif3 showed the translocation between intra- and extracellular tachyzoites. TgCDPKif3 could phosphorylate T. gondii aldolase 1 (TgALD1) in vitro. The interaction between TgCDPKif3 and TgALD1 was confirmed by the co-immunoprecipitation assay in mammal cells. We suggested that TgCDPKif3 could participate in the motility of T. gondii through the phosphorylation of glideosome complex member.
钙离子(Ca(2+))信号传导被认为在刚地弓形虫的运动中起重要作用,包括侵入宿主细胞和从宿主细胞逸出。最近,有报道称刚地弓形虫滑行装置组件在侵入过程中发生磷酸化。为了阐明刚地弓形虫钙调蛋白样结构域蛋白激酶在连接Ca(2+)刺激与运动的信号通路中的作用,我们对刚地弓形虫钙调蛋白样结构域蛋白激酶亚型3(TgCDPKif3)进行了表征。TgCDPKif3与恶性疟原虫钙依赖性蛋白激酶1同源,据报道该激酶可使恶性疟原虫滑行装置组件磷酸化。TgCDPKif3作为一种融合蛋白被纯化,该融合蛋白用[γ-(32)P]ATP标记,随后通过磷酸酶处理去除标记。当TgCDPKif3的假定催化赖氨酸残基被丙氨酸取代时,磷酸化被消除。在高Ca(2+)浓度下,TgCDPKif3以Ca(2+)依赖性方式将组蛋白II(AS)作为代表性底物进行磷酸化。TgCDPKif3定位于速殖子的顶端。TgCDPKif3在细胞内和细胞外速殖子之间表现出易位。TgCDPKif3在体外可使刚地弓形虫醛缩酶1(TgALD1)磷酸化。通过哺乳动物细胞中的免疫共沉淀试验证实了TgCDPKif3与TgALD1之间的相互作用。我们认为TgCDPKif3可能通过使滑行体复合物成员磷酸化来参与刚地弓形虫 的运动。