Kathryn M. Ferguson

Affiliations: 
Biochemistry and Molecular Biophysics University of Pennsylvania, Philadelphia, PA, United States 
Area:
Biochemistry, Molecular Biology
Website:
http://www.med.upenn.edu/apps/faculty/index.php/g20/p12430
Google:
"Kathryn Ferguson"
Cross-listing: Physiology Academic Tree

Parents

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Paul B. Sigler grad student 1996 Yale
 (Pleckstrin homology domains: structure and ligand binding.)
BETA: Related publications

Publications

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Bagchi A, Stayrook SE, Xenaki KT, et al. (2024) Structural insights into the role and targeting of EGFRvIII. Structure (London, England : 1993)
Hu C, Leche CA, Kiyatkin A, et al. (2022) Glioblastoma mutations alter EGFR dimer structure to prevent ligand bias. Nature. 602: 518-522
Ferguson KM, Hu C, Lemmon MA. (2020) Insulin and EGF receptor family members share parallel activation mechanisms. Protein Science : a Publication of the Protein Society
Emptage RP, Lemmon MA, Ferguson KM, et al. (2018) Structural Basis for MARK1 Kinase Autoinhibition by Its KA1 Domain. Structure (London, England : 1993). 26: 1137-1143.e3
Bagchi A, Haidar JN, Eastman SW, et al. (2017) Molecular basis for necitumumab inhibition of EGFR variants associated with acquired cetuximab resistance. Molecular Cancer Therapeutics
Freed DM, Bessman NJ, Kiyatkin A, et al. (2017) EGFR Ligands Differentially Stabilize Receptor Dimers to Specify Signaling Kinetics. Cell
Emptage RP, Schoenberger MJ, Ferguson KM, et al. (2017) Intramolecular autoinhibition of Checkpoint Kinase 1 is mediated by conserved basic motifs of the C-terminal Kinase Associated-1 domain. The Journal of Biological Chemistry
Moore JO, Lemmon MA, Ferguson KM. (2017) Dimerization of Tie2 mediated by its membrane-proximal FNIII domains. Proceedings of the National Academy of Sciences of the United States of America
Emptage RP, Lemmon MA, Ferguson KM. (2016) Molecular determinants of KA1 domain-mediated autoinhibition and phospholipid activation of MARK1 kinase. The Biochemical Journal
Moravcevic K, Alvarado D, Schmitz KR, et al. (2015) Comparison of Saccharomyces cerevisiae F-BAR domain structures reveals a conserved inositol phosphate binding site. Structure (London, England : 1993). 23: 352-63
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