Claire T Friel

5PUBLICATIONS
10CO-AUTHORS
Microbial taxonomyMolecular targetsCell development, proliferation and deathProteomics and intermolecular interactions (excl. medical proteomics)Medical infection agents (incl. prions)
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Publications (5)

|Aug 31, 2022
A synthetic ancestral kinesin-13 depolymerizes microtubules faster than any natural depolymerizing kinesin.

Hannah R Belsham, Hanan M Alghamdi, Nikita Dave

|Oct 02, 2019
Identification of key residues that regulate the interaction of kinesins with microtubule ends.

Hannah R Belsham, Claire T Friel

|Nov 24, 2018
Parts list for a microtubule depolymerising kinesin.

Claire T Friel, Julie P Welburn

|Oct 14, 2016
The family-specific α4-helix of the kinesin-13, MCAK, is critical to microtubule end recognition.

Jennifer T Patel, Hannah R Belsham, Alexandra J Rathbone

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