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Inhibition of vesicular secretion in both neuronal and nonneuronal cells by a retargeted endopeptidase derivative of Clostridium botulinum neurotoxin type A

Authors :
Clifford C. Shone
John R. Purkiss
Janice D. Broadbridge
Lorna M. Friis
Michael Duggan
Conrad Padraig Quinn
Keith Foster
Sarah J. Fooks
John A. Chaddock
Source :
Infection and immunity. 68(5)
Publication Year :
2000

Abstract

Clostridial neurotoxins potently and specifically inhibit neurotransmitter release in defined cell types by a mechanism that involves cleavage of specific components of the vesicle docking/fusion complex, the SNARE complex. A derivative of the type A neurotoxin from Clostridium botulinum (termed LH N /A) that retains catalytic activity can be prepared by proteolysis. The LH N /A, however, lacks the putative native binding domain (H C ) of the neurotoxin and is thus unable to bind to neurons and effect inhibition of neurotransmitter release. Here we report the chemical conjugation of LH N /A to an alternative cell-binding ligand, wheat germ agglutinin (WGA). When applied to a variety of cell lines, including those that are ordinarily resistant to the effects of neurotoxin, WGA-LH N /A conjugate potently inhibits secretory responses in those cells. Inhibition of release is demonstrated to be ligand mediated and dose dependent and to occur via a mechanism involving endopeptidase-dependent cleavage of the natural botulinum neurotoxin type A substrate. These data confirm that the function of the H C domain of C. botulinum neurotoxin type A is limited to binding to cell surface moieties. The data also demonstrate that the endopeptidase and translocation functions of the neurotoxin are effective in a range of cell types, including those of nonneuronal origin. These observations lead to the conclusion that a clostridial endopeptidase conjugate that can be used to investigate SNARE-mediated processes in a variety of cells has been successfully generated.

Details

ISSN :
00199567
Volume :
68
Issue :
5
Database :
OpenAIRE
Journal :
Infection and immunity
Accession number :
edsair.doi.dedup.....21dc7ab6be2b1004cb61f19132c1593f