Martha S. Cyert
Affiliations: | Stanford University, Palo Alto, CA |
Area:
Molecular Biology, Cell Biology, GeneticsGoogle:
"Martha Cyert"Parents
Sign in to add mentorMarc W. Kirschner | grad student | ||
Jeremy Thorner | grad student | (Neurotree) |
Children
Sign in to add traineeAngelike Stathopoulos | grad student | 1992-1998 | Stanford (DevTree) |
Michael J. Conboy | grad student | 2000 | Stanford |
Leila M. Boustany | grad student | 2002 | Stanford |
Kimberly A. Kafadar | grad student | 2004 | Stanford |
Evan L Guiney | grad student | 2007-2014 | Stanford |
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Publications
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Bradburn DA, Reis JC, Arthanari H, et al. (2024) A novel motif in calcimembrin/C16orf74 dictates multimeric dephosphorylation by calcineurin. Biorxiv : the Preprint Server For Biology |
Tsekitsidou E, Wong CJ, Ulengin-Talkish I, et al. (2023) Calcineurin associates with centrosomes and regulates cilia length maintenance. Journal of Cell Science |
Ulengin-Talkish I, Cyert MS. (2022) A cellular atlas of calcineurin signaling. Biochimica Et Biophysica Acta. Molecular Cell Research. 1870: 119366 |
Ulengin-Talkish I, Parson MAH, Jenkins ML, et al. (2021) Palmitoylation targets the calcineurin phosphatase to the phosphatidylinositol 4-kinase complex at the plasma membrane. Nature Communications. 12: 6064 |
Wigington CP, Roy J, Damle NP, et al. (2020) Systematic Discovery of Short Linear Motifs Decodes Calcineurin Phosphatase Signaling. Molecular Cell |
Nguyen NUN, Canseco DC, Xiao F, et al. (2020) A calcineurin-Hoxb13 axis regulates growth mode of mammalian cardiomyocytes. Nature |
Ulengin-Talkish I, Bond R, St-Denis N, et al. (2020) Uncovering The Unique Functions And Regulation Of The Palmitoylated Calcineurin Isoform, CNβ1 The Faseb Journal. 34: 1-1 |
Roy J, Cyert MS. (2019) Identifying New Substrates and Functions for an Old Enzyme: Calcineurin. Cold Spring Harbor Perspectives in Biology |
Nguyen HQ, Roy J, Harink B, et al. (2019) Quantitative mapping of protein-peptide affinity landscapes using spectrally encoded beads. Elife. 8 |
Bond R, Ly N, Cyert MS. (2017) The unique C-terminus of calcineurin isoform CNAβ1 confers non-canonical regulation of enzyme activity by Ca(2+) and calmodulin. The Journal of Biological Chemistry |