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Sheldon Park
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Streptavidin–biotin technology: improvements and innovations in chemical and biological applications
CM Dundas, D Demonte, S Park
Applied microbiology and biotechnology 97, 9343-9353, 2013
4742013
Inhibition of SARS-CoV-2 viral entry upon blocking N-and O-glycan elaboration
Q Yang, TA Hughes, A Kelkar, X Yu, K Cheng, S Park, WC Huang, ...
elife 9, e61552, 2020
1782020
Stable, high‐affinity streptavidin monomer for protein labeling and monovalent biotin detection
KH Lim, H Huang, A Pralle, S Park
Biotechnology and bioengineering 110 (1), 57-67, 2013
1622013
Mapping the dynamics and nanoscale organization of synaptic adhesion proteins using monomeric streptavidin
O Chamma, I., Letellier, M., Butler, C., Lim, K.H., Gauthereau, I. Choquet ...
Nat Commun 7, 10773, 2016
1442016
Statistical and molecular dynamics studies of buried waters in globular proteins
S Park, JG Saven
Proteins: Structure, Function, and Bioinformatics 60 (3), 450-463, 2005
1372005
Advances in computational protein design
S Park, X Yang, JG Saven
Current opinion in structural biology 14 (4), 487-494, 2004
1342004
A second calcineurin binding site on the NFAT regulatory domain
S Park, M Uesugi, GL Verdine
Proceedings of the National Academy of Sciences 97 (13), 7130-7135, 2000
1262000
Structural coupling between FKBP12 and buried water
S Szep, S Park, ET Boder, GD Van Duyne, JG Saven
Proteins: Structure, Function, and Bioinformatics 74 (3), 603-611, 2009
782009
Super-resolution imaging of synaptic and Extra-synaptic AMPA receptors with different-sized fluorescent probes
SH Lee, C Jin, E Cai, P Ge, Y Ishitsuka, KW Teng, AA De Thomaz, D Nall, ...
Elife 6, e27744, 2017
752017
Engineered streptavidin monomer and dimer with improved stability and function
KH Lim, H Huang, A Pralle, S Park
Biochemistry 50 (40), 8682-8691, 2011
752011
Limitations of yeast surface display in engineering proteins of high thermostability
S Park, Y Xu, XF Stowell, F Gai, JG Saven, ET Boder
Protein Engineering Design and Selection 19 (5), 211-217, 2006
742006
Structure‐based engineering of streptavidin monomer with a reduced biotin dissociation rate
D DeMonte, EJ Drake, KH Lim, AM Gulick, S Park
Proteins: Structure, Function, and Bioinformatics 81 (9), 1621-1633, 2013
702013
Protein engineering and design
SJ Park, JR Cochran
CRC press, 2009
492009
Expression and purification of soluble monomeric streptavidin in Escherichia coli
D Demonte, CM Dundas, S Park
Applied microbiology and biotechnology 98, 6285-6295, 2014
472014
Computational design of protein therapeutics
I Hwang, S Park
Drug Discovery Today: Technologies 5 (2-3), e43-e48, 2008
372008
Progress in the development and application of computational methods for probabilistic protein design
S Park, H Kono, W Wang, ET Boder, JG Saven
Computers & chemical engineering 29 (3), 407-421, 2005
322005
Simulation of pH‐dependent edge strand rearrangement in human β‐2 microglobulin
S Park, JG Saven
Protein science 15 (1), 200-207, 2006
262006
Recent advances in the engineering and application of streptavidin-like molecules
Q Le, V Nguyen, S Park
Applied microbiology and biotechnology 103, 7355-7365, 2019
202019
Biotin‐assisted folding of streptavidin on the yeast surface
K Hong Lim, I Hwang, S Park
Biotechnology progress 28 (1), 276-283, 2012
192012
Epitope-Guided Engineering of Monobody Binders for in Vivo Inhibition of Erk-2 Signaling
JK Mann, JF Wood, AF Stephan, ES Tzanakakis, DM Ferkey, S Park
ACS chemical biology 8 (3), 608-616, 2013
182013
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