Publications
2023
3D matrix adhesion feedback controls nuclear force coupling to drive invasive cell migration.
Newman, D., Young, L. E., Waring, T., Brown, L., Wolanska, K. I., MacDonald, E., . . . Zech, T. (2023). 3D matrix adhesion feedback controls nuclear force coupling to drive invasive cell migration.. Cell reports, 42(12), 113554. doi:10.1016/j.celrep.2023.113554
2021
Investigating actomyosin mediated nuclear force coupling in Hutchinson Gilford Progeria Syndrome
Waring, T. (2021, November 1). Investigating actomyosin mediated nuclear force coupling in Hutchinson Gilford Progeria Syndrome.
3D matrix adhesion composition facilitates nuclear force coupling to drive invasive cell migration
2019
Membrane tension orchestrates rear retraction in matrix directed cell migration
Hetmanski., de Belly., Busnelli., Waring, T., Nair., Sokleva., . . . Caswell. (2019). Membrane tension orchestrates rear retraction in matrix directed cell migration. Developmental Cell, 51(4), 460-475. doi:10.1016/j.devcel.2019.09.006
Local actin nucleation tunes centrosomal microtubule nucleation during passage through mitosis
Farina, F., Ramkumar, N., Brown, L., Samander-Eweis, D., Anstatt, J., Waring, T., . . . Baum, B. (2019). Local actin nucleation tunes centrosomal microtubule nucleation during passage through mitosis. The EMBO Journal, 38(11). doi:10.15252/embj.201899843
Matrix adhesion site function in polarised invasive migration
Newman, D., Waring, T., Young, L., Brown, L., MacDonald, E., Ronn-Vehland, I., . . . Zech, T. (2019). Matrix adhesion site function in polarised invasive migration. In INTERNATIONAL JOURNAL OF EXPERIMENTAL PATHOLOGY Vol. 100 (pp. A28-A29). Retrieved from https://www.webofscience.com/
2018
HRS-WASH axis governs Actin mediated endosomal recycling and cell invasion
MacDonald, E., Brown, L., Selvais, A., Liu, H., Waring, T., Newman, D., . . . Zech, T. N. (2018). HRS-WASH axis governs Actin mediated endosomal recycling and cell invasion. The Journal of Cell Biology, 217(7), 2549-2564. doi:10.1083/jcb.201710051
STEF/TIAM2-mediated Rac1 activity at the nuclear envelope regulates the perinuclear actin cap
Woroniuk, A., porter, A., White, G., Newman, D., Diamantopoulou, Z., Waring, T., . . . Malliri, A. (2018). STEF/TIAM2-mediated Rac1 activity at the nuclear envelope regulates the perinuclear actin cap. Nature Communications, 9. doi:10.1038/s41467-018-04404-4