Katherine W Tripp, Ph.D.

Affiliations: 
Biophysics Johns Hopkins University, Baltimore, MD 
 MCB University of California, Berkeley, Berkeley, CA, United States 
 Physics University of California, Santa Barbara, Santa Barbara, CA, United States 
Area:
biophysics
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"Katherine Tripp"
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Parents

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Douglas Barrick grad student
Susan Marqusee grad student (Chemistry Tree)
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Publications

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Sternke M, Tripp KW, Barrick D. (2021) Surface residues and nonadditive interactions stabilize a consensus homeodomain protein. Biophysical Journal. 120: 5267-5278
Sternke M, Tripp KW, Barrick D. (2020) The use of consensus sequence information to engineer stability and activity in proteins. Methods in Enzymology. 643: 149-179
Sternke M, Tripp KW, Barrick D. (2019) Consensus sequence design as a general strategy to create hyperstable, biologically active proteins. Proceedings of the National Academy of Sciences of the United States of America. 116: 11275-11284
Sternke M, Tripp KW, Barrick D. (2019) Investigating the Generality and Biophysical Underpinnings of Consensus Protein Stability Enhancement Biophysical Journal. 116: 37a
Tripp KW, Sternke M, Majumdar A, et al. (2017) Creating a homeodomain with high stability and DNA binding affinity by sequence averaging. Journal of the American Chemical Society
Koulechova DA, Tripp KW, Horner G, et al. (2015) When the Scaffold Cannot Be Ignored: The Role of the Hydrophobic Core in Ligand Binding and Specificity. Journal of Molecular Biology. 427: 3316-26
Dimster-Denk D, Tripp KW, Marini NJ, et al. (2013) Mono and dual cofactor dependence of human cystathionine β-synthase enzyme variants in vivo and in vitro. G3 (Bethesda, Md.). 3: 1619-28
Tripp KW, Horner GA, Marqusee S. (2010) Reengineering Protein Specificity By Repacking the Hydrophobic Core Biophysical Journal. 98: 25a-26a
Tripp KW, Barrick D. (2008) Rerouting the folding pathway of the Notch ankyrin domain by reshaping the energy landscape Journal of the American Chemical Society. 130: 5681-5688
Tripp KW, Barrick D. (2007) Enhancing the Stability and Folding Rate of a Repeat Protein through the Addition of Consensus Repeats Journal of Molecular Biology. 365: 1187-1200
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