The antioxidant protein glutaredoxin 1 is essential for oxidative stress response and pathogenicity of Toxoplasma gondii

谷胱甘肽 氧化应激 生物 弓形虫 细胞生物学 突变体 活性氧 氧化磷酸化 野生型 超氧化物歧化酶 生物化学 基因 遗传学 硫氧还蛋白 抗体
作者
Tingting Li,Dan‐Yu Zhao,Qin‐Li Liang,Hany M. Elsheikha,Meng Wang,Li‐Xiu Sun,Zhiwei Zhang,Xiaohong Chen,Xing‐Quan Zhu,Jin‐Lei Wang
出处
期刊:The FASEB Journal [Wiley]
卷期号:37 (6) 被引量:5
标识
DOI:10.1096/fj.202201275r
摘要

Glutaredoxins (Grxs) are ubiquitous antioxidant proteins involved in many molecular processes to protect cells against oxidative damage. Here, we study the roles of Grxs in the pathogenicity of Toxoplasma gondii. We show that Grxs are localized in the mitochondria (Grx1), cytoplasm (Grx2), and apicoplast (Grx3, Grx4), while Grx5 had an undetectable level of expression. We generated Δgrx1-5 mutants of T. gondii type I RH and type II Pru strains using CRISPR-Cas9 system. No significant differences in the infectivity were detected between four Δgrx (grx2-grx5) strains and their respective wild-type (WT) strains in vitro or in vivo. Additionally, no differences were detected in the production of reactive oxygen species, total antioxidant capacity, superoxide dismutase activity, and sensitivity to external oxidative stimuli. Interestingly, RHΔgrx1 or PruΔgrx1 exhibited significant differences in all the investigated aspects compared to the other grx2-grx5 mutant and WT strains. Transcriptome analysis suggests that deletion of grx1 altered the expression of genes involved in transport and metabolic pathways, signal transduction, translation, and obsolete oxidation-reduction process. The data support the conclusion that grx1 supports T. gondii resistance to oxidative killing and is essential for the parasite growth in cultured cells and pathogenicity in mice and that the active site CGFS motif was necessary for Grx1 activity.
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