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High resolution crystal structures of the receptor-binding domain of Clostridium botulinum neurotoxin serotypes A and FA.


ABSTRACT: The binding specificity of botulinum neurotoxins (BoNTs) is primarily a consequence of their ability to bind to multiple receptors at the same time. BoNTs consist of three distinct domains, a metalloprotease light chain (LC), a translocation domain (HN) and a receptor-binding domain (HC). Here we report the crystal structure of HC/FA, complementing an existing structure through the modelling of a previously unresolved loop which is important for receptor-binding. Our HC/FA structure also contains a previously unidentified disulphide bond, which we have also observed in one of two crystal forms of HC/A1. This may have implications for receptor-binding and future recombinant toxin production.

SUBMITTER: Davies JR 

PROVIDER: S-EPMC5866713 | biostudies-literature | 2018

REPOSITORIES: biostudies-literature

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High resolution crystal structures of the receptor-binding domain of <i>Clostridium botulinum</i> neurotoxin serotypes A and FA.

Davies Jonathan R JR   Hackett Gavin S GS   Liu Sai Man SM   Acharya K Ravi KR  

PeerJ 20180321


The binding specificity of botulinum neurotoxins (BoNTs) is primarily a consequence of their ability to bind to multiple receptors at the same time. BoNTs consist of three distinct domains, a metalloprotease light chain (LC), a translocation domain (H<sub>N</sub>) and a receptor-binding domain (H<sub>C</sub>). Here we report the crystal structure of H<sub>C</sub>/FA, complementing an existing structure through the modelling of a previously unresolved loop which is important for receptor-binding.  ...[more]

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