The work of this 2-years fellowship involved the design, synthesis on an automated microwave assisted peptide synthesiser using standard Fmoc-amino acid solid-phase peptide synthesis (SPPS), purification by RP-HPLC and characterisation by ESI-MS, of a library of peptides designed to fold into coiled coil (CC) with binding sites suitable for the coordination of one, two or three Ln(III) ions at a well-defined, controllable, and therefore tuneable, distances from one another. Lanthanide coordination was interrogated using a range of spectroscopic techniques, including UV-visible, fluorescence and circular dichroism spectroscopy. Attempts were also made to obtain structural information through single crystal x-ray diffraction, yielding one crystal structure suitable for publication.
Uni-, bi- and tri-metallic coiled coils were designed and interrogated. Comparisons between the different designs and the spectroscopic outputs led to the establishment of some key structure-function relationships, which ultimately allowed for the more precise tuneable design of “functional” lanthanide sites.
The results obtained have been communicated to the international scientific academic community in several national and international conferences. In total this results in 8 posters and 1 oral communication over the last two years, in addition to weekly and monthly presentations at regular group meetings. Despite the COVID-19 lockdown and subsequent restrictions, I was also able to deliver several talks on the project to the general public (within the UK). Pleasingly these activities are still ongoing and continue despite the project formally coming to an end.