Characterization of the functional activity of botulinum neurotoxin subtype B6

Microbiol Immunol. 2017 Nov;61(11):482-489. doi: 10.1111/1348-0421.12540.

Abstract

Clostridium botulinum produces the highly potent neurotoxin, botulinum neurotoxin (BoNT), which is classified into seven serotypes (A-G); the subtype classification is confirmed by the diversity of amino acid sequences among the serotypes. BoNT from the Osaka05 strain is associated with type B infant botulism and has been classified as BoNT/B subtype B6 (BoNT/B6) by phylogenetic analysis and the antigenicity of its C-terminal heavy chain (HC ) domain. However, the molecular bases for its properties, including its potency, are poorly understood. In this study, BoNT/B6 holotoxin was purified and the biological activity and receptor binding activity of BoNT/B6 compared with those of the previously-characterized BoNT/B1 and BoNT/B2 subtypes. The derivative BoNT/B6 was found to be already nicked and in an activated form, indicating that endogenous protease production may be higher in this strain than in the other two strains. BoNT/B1 exhibited the greatest lethal activity in mice, followed by BoNT/B6, which is consistent with the sensitivity of PC12 cells. No significant differences were seen in the enzymatic activities of the BoNT/Bs against their substrate. HC /B1 and HC /B6 exhibited similar binding affinities to synaptotagmin II (SytII), which is a specific protein receptor for BoNT/B. Binding to the SytII/ganglioside complex is functionally related to the toxic action; however, the receptor recognition sites are conserved. These results suggest that the distinct characteristics and differences in biological sensitivity of BoNT/B6 may be attributable to the function of its Hc .domain.

Keywords: Clostridium botulinum; biological activity; botulinum neurotoxin; subtype B6.

MeSH terms

  • Botulinum Toxins, Type A / chemistry
  • Botulinum Toxins, Type A / metabolism*
  • Botulism / metabolism
  • Botulism / microbiology*
  • Clostridium botulinum / chemistry
  • Clostridium botulinum / enzymology*
  • Clostridium botulinum / genetics
  • Gangliosides / metabolism
  • Humans
  • Kinetics
  • Neurotoxins / chemistry
  • Neurotoxins / metabolism*
  • Vesicle-Associated Membrane Protein 2 / chemistry
  • Vesicle-Associated Membrane Protein 2 / metabolism

Substances

  • Gangliosides
  • Neurotoxins
  • Vesicle-Associated Membrane Protein 2
  • rimabotulinumtoxinB
  • Botulinum Toxins, Type A