Nguyen Hoa Mai, El Hajj Hiba, El Hajj Rana, Tawil Nadim, Berry Laurence, Lebrun Maryse, Bordat Yann, Besteiro Sébastien
DIMNP-UMR 5235 CNRS, Université de Montpellier, Montpellier, France.
Faculty of Medicine, American University of Beirut, Beirut, Lebanon.
Cell Microbiol. 2017 Jun;19(6). doi: 10.1111/cmi.12712. Epub 2017 Jan 10.
Autophagy is a conserved, life-promoting, catabolic process involved in the recycling of nonessential cellular components in response to stress. The parasite Toxoplasma gondii is an early-diverging eukaryote in which part of the autophagy machinery is not exclusively involved in a catabolic process but instead has been repurposed for an original function in organelle inheritance during cell division. This function, depending essentially on protein TgATG8 and its membrane conjugation system, is crucial for parasite survival and prevented an in depth study of autophagy in the mutants generated so far in Toxoplasma. Thus, in order to decipher the primary function of canonical autophagy in the parasites, we generated a cell line deficient for TgATG9, a protein thought to be involved in the early steps of the autophagy process. Although the protein proved to be dispensable for the development of these obligate intracellular parasites in vitro, the absence of TgATG9 led to a reduced ability to sustain prolonged extracellular stress. Importantly, depletion of the protein significantly reduced parasites survival in macrophages and markedly attenuated their virulence in mice. Altogether, this shows TgATG9 is important for the fate of Toxoplasma in immune cells and contributes to the overall virulence of the parasite, possibly through an involvement in a canonical autophagy pathway.
自噬是一种保守的、促进生命的分解代谢过程,参与在应激反应中对非必需细胞成分的循环利用。刚地弓形虫是一种早期分化的真核生物,其部分自噬机制并不专门参与分解代谢过程,而是被重新用于细胞分裂过程中细胞器遗传的原始功能。该功能主要依赖于蛋白质TgATG8及其膜结合系统,对寄生虫的存活至关重要,并阻碍了对迄今为止在弓形虫中产生的突变体的自噬进行深入研究。因此,为了解析寄生虫中经典自噬的主要功能,我们构建了一个缺乏TgATG9的细胞系,TgATG9是一种被认为参与自噬过程早期步骤的蛋白质。尽管该蛋白质被证明对于这些专性细胞内寄生虫在体外的发育并非必需,但TgATG9的缺失导致维持长时间细胞外应激的能力下降。重要的是,该蛋白质的缺失显著降低了寄生虫在巨噬细胞中的存活率,并明显减弱了它们在小鼠中的毒力。总之,这表明TgATG9对弓形虫在免疫细胞中的命运很重要,并可能通过参与经典自噬途径对寄生虫的整体毒力有贡献。