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Structure of S-layer protein Sap reveals a mechanism for therapeutic intervention in anthrax

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Anthrax is an ancient and deadly disease caused by the spore-forming bacterial pathogen Bacillus anthracis. At present, anthrax mostly affects wildlife and livestock, although it remains a concern for human public health-primarily for people who handle contaminated animal products and as a bioterrorism threat due to the high resilience of spores, a high fatality rate of cases and the lack of a civilian vaccination programme1,2. The cell surface of B. anthracis is covered by a protective paracrystalline monolayer-known as surface layer or S-layer-that is composed of the S-layer proteins Sap or EA1. Here, we generate nanobodies to inhibit the self-assembly of Sap, determine the structure of the Sap S-layer assembly domain (SapAD) and show that the disintegration of the S-layer attenuates the growth of B. anthracis and the pathology of anthrax in vivo. SapAD comprises six β-sandwich domains that fold and support the formation of S-layers independently of calcium. Sap-inhibitory nanobodies prevented the assembly of Sap and depolymerized existing Sap S-layers in vitro. In vivo, nanobody-mediated disruption of the Sap S-layer resulted in severe morphological defects and attenuated bacterial growth. Subcutaneous delivery of Sap inhibitory nanobodies cleared B. anthracis infection and prevented lethality in a mouse model of anthrax disease. These findings highlight disruption of S-layer integrity as a mechanism that has therapeutic potential in S-layer-carrying pathogens.

Tijdschrift: Nature Microbiology
ISSN: 2058-5276
Issue: 11
Volume: 4
Pagina's: 1805–1814
Jaar van publicatie:2019
Trefwoorden:anthrax, antibacterial, bacterial cell surface, S-layer, nanobody therapy
  • Scopus Id: 85069458138
  • DOI: https://doi.org/10.1038/s41564-019-0499-1
  • WoS Id: 000493113000008
  • ORCID: /0000-0002-9775-4102/work/63856059
  • ORCID: /0000-0002-3825-874X/work/63856064
  • ORCID: /0000-0002-2466-0172/work/63856199
  • ORCID: /0000-0002-4065-0839/work/88147924
  • ORCID: /0000-0003-1635-4033/work/107747730
CSS-citation score:2
Toegankelijkheid:Closed