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自噬的诱导干扰了刚地弓形虫速殖子向缓殖子的转化。

Induction of Autophagy interferes the tachyzoite to bradyzoite transformation of Toxoplasma gondii.

作者信息

Li Xiangzhi, Chen Di, Hua Qianqian, Wan Yujing, Zheng Lina, Liu Yangyang, Lin Jiaxin, Pan Changwang, Hu Xin, Tan Feng

机构信息

Department of Parasitology,School of Basic Medical Sciences,Wenzhou Medical University,Wenzhou,Zhejiang 325035,People's Republic of China.

School of the First Clinical Medical Sciences,Wenzhou Medical University,Wenzhou,Zhejiang 325035,People's Republic of China.

出版信息

Parasitology. 2016 Apr;143(5):639-45. doi: 10.1017/S0031182015001985. Epub 2016 Mar 1.

Abstract

Autophagy process in Toxoplasma gondii plays a vital role in regulating parasite survival or death. Thus, once having an understanding of certain effects of autophagy on the transformation of tachyzoite to bradyzoite this will allow us to elucidate the function of autophagy during parasite development. Herein, we used three TgAtg proteins involved in Atg8 conjugation system, TgAtg3, TgAtg7 and TgAtg8 to evaluate the autophagy level in tachyzoite and bradyzoite of Toxoplasma in vitro based on Pru TgAtg7-HA transgenic strains. We showed that both TgAtg3 and TgAtg8 were expressed at a significantly lower level in bradyzoites than in tachyzoites. Importantly, the number of parasites containing fluorescence-labelled TgAtg8 puncta was significantly reduced in bradyzoites than in tachyzoites, suggesting that autophagy is downregulated in Toxoplasma bradyzoite in vitro. Moreover, after treatment with drugs, bradyzoite-specific gene BAG1 levels decreased significantly in rapamycin-treated bradyzoites and increased significantly in 3-MA-treated bradyzoites in comparison with control bradyzoites, indicating that Toxoplasma autophagy is involved in the transformation of tachyzoite to bradyzoite in vitro. Together, it is suggested that autophagy may serve as a potential strategy to regulate the transformation.

摘要

弓形虫中的自噬过程在调节寄生虫的存活或死亡中起着至关重要的作用。因此,一旦了解自噬对速殖子向缓殖子转化的某些影响,这将使我们能够阐明自噬在寄生虫发育过程中的功能。在此,我们基于Pru TgAtg7-HA转基因菌株,使用参与Atg8缀合系统的三种TgAtg蛋白,即TgAtg3、TgAtg7和TgAtg8,在体外评估弓形虫速殖子和缓殖子中的自噬水平。我们发现,TgAtg3和TgAtg8在缓殖子中的表达水平均显著低于速殖子。重要的是,含有荧光标记的TgAtg8斑点的寄生虫数量在缓殖子中比在速殖子中显著减少,这表明体外弓形虫缓殖子中的自噬被下调。此外,药物处理后,与对照缓殖子相比,雷帕霉素处理的缓殖子中缓殖子特异性基因BAG1水平显著降低,而3-MA处理的缓殖子中BAG1水平显著升高,表明弓形虫自噬参与了体外速殖子向缓殖子的转化。总之,提示自噬可能是调节这种转化的一种潜在策略。

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