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Calcium-dependent phosphorylation alters class XIVa myosin function in the protozoan parasite Toxoplasma gondii

机译:钙依赖性磷酸化改变了刚体寄生虫弓形虫中的XIVa类肌球蛋白功能

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摘要

Class XIVa myosins comprise a unique group of myosin motor proteins found in apicomplexan parasites, including those that cause malaria and toxoplasmosis. The founding member of the class XIVa family, Toxoplasma gondii myosin A (TgMyoA), is a monomeric unconventional myosin that functions at the parasite periphery to control gliding motility, host cell invasion, and host cell egress. How the motor activity of TgMyoA is regulated during these critical steps in the parasite's lytic cycle is unknown. We show here that a small-molecule enhancer of T. gondii motility and invasion (compound 130038) causes an increase in parasite intracellular calcium levels, leading to a calcium-dependent increase in TgMyoA phosphorylation. Mutation of the major sites of phosphorylation altered parasite motile behavior upon compound 130038 treatment, and parasites expressing a nonphosphorylatable mutant myosin egressed from host cells more slowly in response to treatment with calcium ionophore. These data demonstrate that TgMyoA undergoes calcium-dependent phosphorylation, which modulates myosin-driven processes in this important human pathogen.
机译:XIVa类肌球蛋白包括在复合体寄生虫中发现的一组独特的肌球蛋白运动蛋白,包括引起疟疾和弓形体病的那些。 XIVa类家族的创始成员,弓形体肌球蛋白A(TgMyoA),是一种非常规的单体肌球蛋白,在寄生虫外围起作用,以控制滑行运动,宿主细胞入侵和宿主细胞外出。 TgMyoA的运动活性如何在这些寄生虫的裂解周期的关键步骤中被调节是未知的。我们在这里显示,弓形虫的运动和侵袭(化合物130038)的小分子增强剂引起寄生虫细胞内钙水平的增加,导致TgMyoA磷酸化的钙依赖性增加。磷酸化主要位点的突变在化合物130038处理后改变了寄生虫的运动行为,响应于钙离子载体处理,表达不可磷酸化突变型肌球蛋白的寄生虫从宿主细胞中流出的速度更慢。这些数据表明,TgMyoA经历了钙依赖性磷酸化,从而调节了这种重要的人类病原体中肌球蛋白驱动的过程。

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