Staff profile
Overview

Affiliation | Telephone |
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Postdoctoral Research Associate in the Department of Biosciences |
Publications
Journal Article
- Mutant p53 induces SH3BGRL expression to promote cell engulfmentMuller, P., Dolma, L., Banyard, A., Hall, C., Breitweiser, W., Sahoo, S., Weightman, J., Pazos Gil, M., Behan, C., Fullard, N., Williams, L., Ashton, G., Bell, S., & Patterson, M. (in press). Mutant p53 induces SH3BGRL expression to promote cell engulfment. Cell Death Discovery.
- New imaging tools reveal live cellular collagen secretion, fibril dynamics and network organisationKent, O., Casey, E. R., Brown, M., Bell, S., Ehrman, M. C., Flagler, M. J., Määttä, A., Benham, A. M., & Hawkins, T. J. (2025). New imaging tools reveal live cellular collagen secretion, fibril dynamics and network organisation. Scientific Reports, 15, Article 13764. https://doi.org/10.1038/s41598-025-96280-4
- Elucidation of the AGR2 interactome in esophageal adenocarcinoma cells identifies a redox sensitive chaperone hub for the quality control of MUC-5ACWorfolk, J., Bell, S., Simpson, L., Carne, N., Francis, S., Engelbertsen, V., Brown, A., Walker, J., Viswanath, Y., & Benham, A. (2019). Elucidation of the AGR2 interactome in esophageal adenocarcinoma cells identifies a redox sensitive chaperone hub for the quality control of MUC-5AC. Antioxidants and Redox Signaling, 31(15), 1117-1132. https://doi.org/10.1089/ars.2018.7647
- Reductive stress selectively disrupts collagen homeostasis and modifies growth factor-independent signalling through the MAPK/Akt pathway in human dermal fibroblastsCarne, N., Brown, A., Bell, S., Maatta, A., Flagler, M., & Benham, A. (2019). Reductive stress selectively disrupts collagen homeostasis and modifies growth factor-independent signalling through the MAPK/Akt pathway in human dermal fibroblasts. Molecular and Cellular Proteomics, 18(6), 1123-1137. https://doi.org/10.1074/mcp.ra118.001140