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刚地弓形虫转录因子 TgAP2XI-5 调控参与虫株毒力和宿主侵袭的基因表达。

Toxoplasma transcription factor TgAP2XI-5 regulates the expression of genes involved in parasite virulence and host invasion.

机构信息

From the Center for Infection and Immunity of Lille, CNRS UMR 8204, INSERM 1019, Université Lille Nord de France, Institut Pasteur de Lille, 59 000 Lille, France.

出版信息

J Biol Chem. 2013 Oct 25;288(43):31127-38. doi: 10.1074/jbc.M113.486589. Epub 2013 Sep 10.

Abstract

Gene regulation in apicomplexan parasites, a phylum containing important protozoan parasites such as Plasmodium and Toxoplasma, is poorly understood. The life cycle of Toxoplasma gondii is complex, with multiple proliferation and differentiation steps, of which tachyzoite proliferation is the most relevant to pathogenesis in humans and animals. Tachyzoites express invasion and virulence factors that are crucial for their survival and manipulation of host cell functions. The expression of those factors is tightly controlled during the tachyzoite cell cycle to permit their correct packaging in newly formed apical secretory organelles named micronemes and rhoptries in the daughter cells. However, little is known about the factors that control the expression of genes encoding the virulence factors present in these parasite-specific secretory organelles. We report that the plant-like nuclear factor TgAP2XI-5 targets more than 300 gene promoters and actively controls the transcription of these genes. Most of these target genes, including those that are essential for parasite virulence, showed a peak of expression in the S and M phases of the cell cycle. Furthermore, we identified the cis-regulatory element recognized by TgAP2XI-5 and demonstrated its ability to actively drive gene transcription. Our results demonstrated that TgAP2XI-5 is a novel DNA sequence-specific transcription factor associated with promoter activation. TgAP2XI-5 may regulate gene transcription of crucial virulence factors in T. gondii.

摘要

质体生物中基因的调控,这个门包含了重要的原生动物寄生虫,如疟原虫和刚地弓形虫,目前还知之甚少。刚地弓形虫的生命周期很复杂,有多个增殖和分化步骤,其中速殖子增殖与人类和动物的发病机制最为相关。速殖子表达入侵和毒力因子,这些因子对它们的生存和宿主细胞功能的操纵至关重要。这些因子的表达在速殖子细胞周期中受到严格控制,以允许它们在新形成的顶端分泌细胞器中正确包装,这些细胞器在子细胞中被命名为微线体和棒状体。然而,目前对于控制这些寄生虫特异性分泌细胞器中编码毒力因子的基因表达的因素知之甚少。我们报告称,植物样核因子 TgAP2XI-5 靶向超过 300 个基因启动子,并积极控制这些基因的转录。这些靶基因中的大多数,包括那些对寄生虫毒力至关重要的基因,在细胞周期的 S 和 M 期表现出表达峰值。此外,我们鉴定了 TgAP2XI-5 识别的顺式调控元件,并证明了它主动驱动基因转录的能力。我们的研究结果表明,TgAP2XI-5 是一种与启动子激活相关的新型 DNA 序列特异性转录因子。TgAP2XI-5 可能调节刚地弓形虫中关键毒力因子的基因转录。

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