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Virulent Toxoplasma gondii Evade Immunity-Related GTPase (IRG)-Mediated Parasite Vacuole Disruption Within Primed Macrophages

机译:毒性毒素吞噬与免疫相关的GTP酶(IRG)介导的寄生虫液泡破碎在灌注巨噬细胞内

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摘要

Cytokine-activated macrophages restrain the replication of intracellular parasites and disrupt the integrity of vacuolar pathogens. Here we show that NOS2 and the IRG family member Irgm3, respectively are required for the ability of in vivo primed macrophages to restrain the growth of Toxoplasma gondii and to destroy the parasite's intracellular niche. Remarkably, virulent Type I strains of T. gondii evade IRG-dependent vacuolar disruption, while remaining susceptible to iNOS-dependent restriction. The ability of virulent T. gondii to escape killing by macrophages is controlled at the level of the individual vacuole and is associated with differential permissiveness for association of the IRG proteins Irga6 (IIGP1) and Irgb6 (TGTP) to the vacuolar membrane. Surprisingly, expression of the Type I ROP-18 virulence determinant in an avirulent strain did not confer the evasive phenotype. These results pinpoint evasion of vacuolar disruption by IRG proteins as a new determinant of pathogen virulence.

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