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

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Abstract
Upon invading target cells, multifunctional autoprocessing repeatsin- 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. © 2019 National Academy of Sciences. All rights reserved.
Author(s)
Lee, YoungjinKim, Byoung SikChoi, SanghyeonLee, Eun-YoungPark, ShinhyeHwang, JungwonKwon, YumiHyun, JaekyungLee, CheoljuKim, Jihyun F.Eom, Soo HyunKim, Myung Hee
Issued Date
2019-09
Type
Article
DOI
10.1073/pnas.1905095116
URI
https://scholar.gist.ac.kr/handle/local/12547
Publisher
National Academy of Sciences
Citation
Proceedings of the National Academy of Sciences of the United States of America, v.116, no.36, pp.18031 - 18040
ISSN
0027-8424
Appears in Collections:
Department of Life Sciences > 1. Journal Articles
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