Oligomerisation and thermal stability of polyvalent integrin α5β1 ligands
Kreiner, Michaela and Byron, Olwyn and Domingues, Diana and van der Walle, Christopher F. (2009) Oligomerisation and thermal stability of polyvalent integrin α5β1 ligands. Biophysical Chemistry, 142 (1-3). pp. 34-39. ISSN 0301-4622 (http://dx.doi.org/10.1016/j.bpc.2009.03.001)
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Synthetic oligomeric integrin α5β1 ligands, specifically immobilised to surfaces, facilitate increased fibroblast cell spreading compared with that associated with the monomer. These ligands consist of a N-terminal fibronectin domain pair, a spacer and a di-, tri- or tetrameric coiled coil. However, it is not yet clear what effect fusion of the fibronectin domains has on the predicted oligomerisation of the coiled coils. Using analytical ultracentrifugation we show that the predicted tetrameric and trimeric coiled coils facilitate a corresponding ligand oligomerisation with half-dissociation at 0.7 and 0.2 µM, respectively. In contrast, the predicted dimeric coiled coil formed both dimers and trimers. Under non-reducing conditions, the unique C-terminal thiol-facilitated inter-oligomer dimerisation of the trimeric species, generating hexameric ligands. Disulphide bonding also increased helical stability during thermal unfolding. The work allows the cellular response to these clustered integrin α5β1 ligands to be more accurately interpreted, and has wider implications with respect to the utility of coiled coils as tools to facilitate protein oligomerisation.
ORCID iDs
Kreiner, Michaela ORCID: https://orcid.org/0000-0003-4824-0153, Byron, Olwyn, Domingues, Diana and van der Walle, Christopher F.;-
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Item type: Article ID code: 15316 Dates: DateEvent2009PublishedSubjects: Medicine > Therapeutics. Pharmacology
Medicine > Pharmacy and materia medica
Science > MicrobiologyDepartment: Faculty of Science > Strathclyde Institute of Pharmacy and Biomedical Sciences Depositing user: Ms Ann Barker-Myles Date deposited: 05 Feb 2010 16:30 Last modified: 11 Nov 2024 09:09 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/15316