Literature DB >> 32895527

Anthrax lethal factor cleaves regulatory subunits of phosphoinositide-3 kinase to contribute to toxin lethality.

Megan A Mendenhall1, Shihui Liu2, Makayla K Portley1, Danielle O'Mard1, Rasem Fattah1, Roman Szabo3, Thomas H Bugge3, Jaspal S Khillan4, Stephen H Leppla1, Mahtab Moayeri5.   

Abstract

Anthrax lethal toxin (LT), produced by Bacillus anthracis, comprises a receptor-binding moiety, protective antigen and the lethal factor (LF) protease1,2. Although LF is known to cleave mitogen-activated protein kinase kinases (MEKs/MKKs) and some variants of the NLRP1 inflammasome sensor, targeting of these pathways does not explain the lethality of anthrax toxin1,2. Here we report that the regulatory subunits of phosphoinositide-3 kinase (PI3K)-p85α (PIK3R1) and p85β (PIK3R2)3,4-are substrates of LF. Cleavage of these proteins in a proline-rich region between their N-terminal Src homology and Bcr homology domains disrupts homodimer formation and impacts PI3K signalling. Mice carrying a mutated p85α that cannot be cleaved by LF show a greater resistance to anthrax toxin challenge. The LF(W271A) mutant cleaves p85α with lower efficiency and is non-toxic to mice but can regain lethality when combined with PI3K pathway inhibitors. We provide evidence that LF targets two signalling pathways that are essential for growth and metabolism and that the disabling of both pathways is likely necessary for lethal anthrax infection.

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Year:  2020        PMID: 32895527     DOI: 10.1038/s41564-020-0782-1

Source DB:  PubMed          Journal:  Nat Microbiol        ISSN: 2058-5276            Impact factor:   17.745


  2 in total

1.  Receptor-enhanced immunogenicity of anthrax protective antigen is primarily mediated by capillary morphogenesis Protein-2.

Authors:  Anita Verma; Mahtab Moayeri; Christopher P Mocca; Danielle O'Mard; Qian Ma; Stephen H Leppla; Drusilla L Burns
Journal:  Vaccine       Date:  2022-06-14       Impact factor: 4.169

2.  Anthrax toxins regulate pain signaling and can deliver molecular cargoes into ANTXR2+ DRG sensory neurons.

Authors:  Nicole J Yang; Jörg Isensee; Dylan V Neel; Andreza U Quadros; Han-Xiong Bear Zhang; Justas Lauzadis; Sai Man Liu; Stephanie Shiers; Andreea Belu; Shilpa Palan; Sandra Marlin; Jacquie Maignel; Angela Kennedy-Curran; Victoria S Tong; Mahtab Moayeri; Pascal Röderer; Anja Nitzsche; Mike Lu; Bradley L Pentelute; Oliver Brüstle; Vineeta Tripathi; Keith A Foster; Theodore J Price; R John Collier; Stephen H Leppla; Michelino Puopolo; Bruce P Bean; Thiago M Cunha; Tim Hucho; Isaac M Chiu
Journal:  Nat Neurosci       Date:  2021-12-20       Impact factor: 28.771

  2 in total

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