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首页> 外文期刊>Molecular Microbiology >Cell cycle-dependent, intercellular transmission of Toxoplasma gondii is accompanied by marked changes in parasite gene expression.
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Cell cycle-dependent, intercellular transmission of Toxoplasma gondii is accompanied by marked changes in parasite gene expression.

机译:弓形虫的细胞周期依赖性细胞间传播伴随着寄生虫基因表达的显着变化。

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摘要

Intracellular microbes have evolved efficient strategies for transitioning from one cell to another in a process termed intercellular transmission. Here we show that host cell transmission of the obligate intracellular parasite Toxoplasma gondii is closely tied to specific cell cycle distributions, with egress and reinvasion occurring most proficiently by parasites in the G1 phase. We also reveal that Toxoplasma undergoes marked changes in mRNA expression when transitioning from the extracellular environment to its intracellular niche. These mRNA level changes reflect a modal switch from expression of proteins involved in invasion, motility and signal transduction in extracellular parasites to expression of metabolic and DNA replication proteins in intracellular parasites. Host cell binding and signalling associated with the discharge of parasite secretory proteins was not sufficient to induce this switch in gene expression, suggesting that the regulatory mechanisms responsible are tied to the establishment of the intracellular environment. The genes whose expression increased after parasite invasion belong to a progressive cascade known to underlie the parasite division cycle indicating that the unique relationship between the G1 phase and invasion effectively synchronizes short-term population growth. This work provides new insight into how this highly successful parasite competently transits from cell to cell.
机译:细胞内微生物已经进化出有效的策略,可以在称为细胞间传播的过程中从一种细胞过渡到另一种细胞。在这里,我们显示专性细胞内弓形虫弓形虫的宿主细胞传播与特定的细胞周期分布密切相关,G1期的寄生虫最能熟练地进行外侵和入侵。我们还揭示了弓形虫从细胞外环境向其细胞内生态位过渡时,mRNA表达发生明显变化。这些mRNA水平的变化反映了模式的转变,从参与细胞外寄生虫入侵,运动和信号转导的蛋白质表达到细胞内寄生虫中代谢和DNA复制蛋白质的表达。与寄生虫分泌蛋白释放相关的宿主细胞结合和信号传导不足以诱导基因表达的这种转变,这表明负责的调节机制与细胞内环境的建立有关。寄生虫入侵后其表达增加的基因属于已知为寄生虫分裂周期基础的进行性级联反应,表明G1期与入侵之间的独特关系有效地使短期种群增长同步。这项工作为这种高度成功的寄生虫如何从一个细胞到另一个细胞的迁移提供了新的见解。

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