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PNAS Plus: Makes caterpillars floppy-like effector-containing MARTX toxins require host ADP-ribosylation factor (ARF) proteins for systemic pathogenicity

机译:PNAS Plus:使毛毛虫含软盘状效应子的MARTX毒素需要宿主ADP-核糖基化因子(ARF)蛋白才能发挥全身致病性

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摘要

Upon invading target cells, multifunctional autoprocessing repeats-in-toxin (MARTX) toxins secreted by bacterial pathogens release their disease-related modularly structured effector domains. However, it is unclear how a diverse repertoire of effector domains within these toxins are processed and activated. Here, we report that Makes caterpillars floppy-like effector (MCF)-containing MARTX toxins require ubiquitous ADP-ribosylation factor (ARF) proteins for processing and activation of intermediate effector modules, which localize in different subcellular compartments following limited processing of holo effector modules by the internal cysteine protease. Effector domains structured tandemly with MCF in intermediate modules become disengaged and fully activated by MCF, which aggressively interacts with ARF proteins present at the same location as intermediate modules and is converted allosterically into a catalytically competent protease. MCF-mediated effector processing leads ultimately to severe virulence in mice via an MCF-mediated ARF switching mechanism across subcellular compartments. This work provides insight into how bacteria take advantage of host systems to induce systemic pathogenicity.
机译:侵袭靶细胞后,细菌病原体分泌的多功能自加工毒素重复序列(MARTX)毒素释放了疾病相关的模块化结构化效应域。但是,尚不清楚如何处理和激活这些毒素中各种效应子结构域。在这里,我们报告说,使含有毛虫的软盘状效应子(MCF)的MARTX毒素需要普遍存在的ADP-核糖基化因子(ARF)蛋白来处理和激活中间效应子模块,这些中间子模块在有限的整体效应子模块处理后位于不同的亚细胞区室通过内部半胱氨酸蛋白酶。在中间模块中与MCF串联构成的效应子结构域被MCF分离并完全激活,它与存在于中间模块中相同位置的ARF蛋白质发生积极相互作用,并变构地转化为具有催化作用的蛋白酶。 MCF介导的效应子加工最终通过跨亚细胞区室的MCF介导的ARF转换机制最终导致小鼠产生严重毒力。这项工作提供了细菌如何利用宿主系统诱导系统性致病性的见解。

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