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Elucidation of critical pH-dependent structural changes in Botulinum Neurotoxin E.

Authors :
Lalaurie CJ
Splevins A
Barata TS
Bunting KA
Higazi DR
Zloh M
Spiteri VA
Perkins SJ
Dalby PA
Source :
Journal of structural biology [J Struct Biol] 2022 Sep; Vol. 214 (3), pp. 107876. Date of Electronic Publication: 2022 Jun 20.
Publication Year :
2022

Abstract

Botulinum Neurotoxins (BoNT) are the most potent toxins currently known. However, they also have therapeutic applications for an increasing number of motor related conditions due to their specificity, and low diffusion into the system. Although the start- and end- points for the BoNT mechanism of action are well-studied, a critical step remains poorly understood. It is theorised that BoNTs undergo a pH-triggered conformational shift, activating the neurotoxin by priming it to form a transmembrane (TM) channel. To test this hypothesis, we combined molecular dynamics (MD) simulations and small-angle x-ray scattering (SAXS), revealing a new conformation of serotype E (BoNT/E). This conformation was exclusively observed in simulations below pH 5.5, as determined by principal component analysis (PCA), and its theoretical SAXS profile matched an experimental SAXS profile obtained at pH 4. Additionally, a localised secondary structural change was observed in MD simulations below pH 5.5, in a region previously identified as instrumental for membrane insertion for serotype A (BoNT/A). These changes were found at a critical pH value for BoNTs in vivo, and may be relevant for their therapeutic use.<br />Competing Interests: Declaration of Competing Interest The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper. K. A. Bunting and D. Higazi are employed by IPSEN.<br /> (Copyright © 2022 The Author(s). Published by Elsevier Inc. All rights reserved.)

Details

Language :
English
ISSN :
1095-8657
Volume :
214
Issue :
3
Database :
MEDLINE
Journal :
Journal of structural biology
Publication Type :
Academic Journal
Accession number :
35738335
Full Text :
https://doi.org/10.1016/j.jsb.2022.107876