Anthony P. Bretscher, Ph.D.
Affiliations: | Molecular Biology and Genetics | Cornell University, Ithaca, NY, United States |
Area:
Actin and cell polarityWebsite:
https://mbg.cornell.edu/people/anthony-bretscher/Google:
"Anthony Bretscher"Bio:
https://bretscher.wicmb.cornell.edu/
https://bretscher.wicmb.cornell.edu/past-members/
Parents
Sign in to add mentorSimon Baumberg | grad student | University of Leeds (Chemistry Tree) | |
A. Dale Kaiser | post-doc | Stanford (Chemistry Tree) | |
Klaus K. Weber | post-doc | 1977-1980 | Max Planck Institute for Biophysical Chemistry (Chemistry Tree) |
Children
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Publications
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Lombardo AT, Mitchell CAR, Zaman R, et al. (2024) ARHGAP18-ezrin functions as an autoregulatory module for RhoA in the assembly of distinct actin-based structures. Elife. 13 |
Gingras RM, Sulpizio AM, Park J, et al. (2022) High-resolution secretory timeline from vesicle formation at the Golgi to fusion at the plasma membrane in S. cerevisiae. Elife. 11 |
Sulpizio A, Herpin L, Gingras R, et al. (2022) Generation and characterization of conditional yeast mutants affecting each of the two essential functions of the scaffolding proteins Boi1/2 and Bem1. G3 (Bethesda, Md.) |
Miller MR, McDermitt DJ, Sauvanet C, et al. (2022) The RabGAPs EPI64A and EPI64B regulate the apical structure of epithelial cells . Molecular Biology of the Cell. 33: ar8 |
Zaman R, Lombardo A, Sauvanet C, et al. (2021) Effector-mediated ERM activation locally inhibits RhoA activity to shape the apical cell domain. The Journal of Cell Biology. 220 |
Gingras RM, Lwin KM, Miller AM, et al. (2020) Yeast Rgd3 is a phospho-regulated F-BAR-containing RhoGAP involved in the regulation of Rho3 distribution and cell morphology. Molecular Biology of the Cell. mbcE20050288 |
Pelaseyed T, Bretscher A. (2018) Regulation of actin-based apical structures on epithelial cells. Journal of Cell Science. 131 |
Shin M, van Leeuwen J, Boone C, et al. (2018) Yeast Aim21/Tda2 both regulates free actin by reducing barbed end assembly and forms a complex with Cap1/Cap2 to balance actin assembly between patches and cables. Molecular Biology of the Cell |
Pelaseyed T, Sauvanet C, Viswanatha R, et al. (2017) Ezrin activation by LOK phosphorylation involves a PIP2-dependent wedge mechanism. Elife. 6 |
Pelaseyed T, Viswanatha R, Sauvanet C, et al. (2017) Author response: Ezrin activation by LOK phosphorylation involves a PIP2-dependent wedge mechanism Elife |