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Structure of a bimodular botulinum neurotoxin complex provides insights into its oral toxicity.


ABSTRACT: Botulinum neurotoxins (BoNTs) are produced by Clostridium botulinum and cause the fatal disease botulism, a flaccid paralysis of the muscle. BoNTs are released together with several auxiliary proteins as progenitor toxin complexes (PTCs) to become highly potent oral poisons. Here, we report the structure of a ?760 kDa 14-subunit large PTC of serotype A (L-PTC/A) and reveal insight into its absorption mechanism. Using a combination of X-ray crystallography, electron microscopy, and functional studies, we found that L-PTC/A consists of two structurally and functionally independent sub-complexes. A hetero-dimeric 290 kDa complex protects BoNT, while a hetero-dodecameric 470 kDa complex facilitates its absorption in the harsh environment of the gastrointestinal tract. BoNT absorption is mediated by nine glycan-binding sites on the dodecameric sub-complex that forms multivalent interactions with carbohydrate receptors on intestinal epithelial cells. We identified monosaccharides that blocked oral BoNT intoxication in mice, which suggests a new strategy for the development of preventive countermeasures for BoNTs based on carbohydrate receptor mimicry.

SUBMITTER: Lee K 

PROVIDER: S-EPMC3795040 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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Structure of a bimodular botulinum neurotoxin complex provides insights into its oral toxicity.

Lee Kwangkook K   Gu Shenyan S   Jin Lei L   Le Thi Tuc Nghi TT   Cheng Luisa W LW   Strotmeier Jasmin J   Kruel Anna Magdalena AM   Yao Guorui G   Perry Kay K   Rummel Andreas A   Jin Rongsheng R  

PLoS pathogens 20131010 10


Botulinum neurotoxins (BoNTs) are produced by Clostridium botulinum and cause the fatal disease botulism, a flaccid paralysis of the muscle. BoNTs are released together with several auxiliary proteins as progenitor toxin complexes (PTCs) to become highly potent oral poisons. Here, we report the structure of a ∼760 kDa 14-subunit large PTC of serotype A (L-PTC/A) and reveal insight into its absorption mechanism. Using a combination of X-ray crystallography, electron microscopy, and functional stu  ...[more]

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