Back to Search
Start Over
Re-engineering the target specificity of Clostridial neurotoxins - a route to novel therapeutics
- Source :
- Neurotoxicity research. 9(2-3)
- Publication Year :
- 2006
-
Abstract
- The ability to chemically couple proteins to LH(N)-fragments of clostridial neurotoxins and create novel molecules with selectivity for cells other than the natural target cell of the native neurotoxin is well established. Such molecules are able to inhibit exocytosis in the target cell and have the potential to be therapeutically beneficial where secretion from a particular cell plays a causative role in a disease or medical condition. To date, these molecules have been produced by chemical coupling of the LH(N)-fragment and the targeting ligand. This is, however, not a suitable basis for producing pharmaceutical agents as the products are ill defined, difficult to control and heterogeneous. Also, the molecules described to date have targeted neuroendocrine cells that are susceptible to native neurotoxins, and therefore the benefit of creating a molecule with a novel targeting domain has been limited. In this paper, the production of a fully recombinant fusion protein from a recombinant gene encoding both the LH(N)-domain of a clostridial neurotoxin and a specific targeting domain is described, together with the ability of such recombinant fusion proteins to inhibit secretion from non-neuronal target cells. Specifically, a novel protein consisting of the LH(N)-domains of botulinum neurotoxin type C and epidermal growth factor (EGF) that is able to inhibit secretion of mucus from epithelial cells is reported. Such a molecule has the potential to prevent mucus hypersecretion in asthma and chronic obstructive pulmonary disease.
- Subjects :
- Botulinum Toxins
Respiratory Mucosa
Biology
Toxicology
Ligands
Protein Engineering
Exocytosis
law.invention
Cell Line
law
Lectins
Endopeptidases
Escherichia coli
Neurotoxin
Humans
Secretion
Epidermal Growth Factor
Qa-SNARE Proteins
General Neuroscience
Immunotoxins
Mucins
Epithelial Cells
Protein engineering
Fusion protein
Recombinant Proteins
Transport protein
Protein Transport
Biochemistry
Cell culture
Recombinant DNA
Subjects
Details
- ISSN :
- 10298428
- Volume :
- 9
- Issue :
- 2-3
- Database :
- OpenAIRE
- Journal :
- Neurotoxicity research
- Accession number :
- edsair.doi.dedup.....f6a12f32dd9dc98d730c4bb3cff962fc