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Biochemistry|December 17, 2009
The prosegment catalyzes pepsin folding to a kinetically trapped native stateDerek R Dee, Rickey Y YadaBiophysical Journal|October 4, 2011
Dynamics of thermodynamically stable, kinetically trapped, and inhibitor-bound states of pepsinDerek R Dee, Brenna Myers, Rickey Y YadaBiochimica Et Biophysica Acta|May 25, 2015
Foldase and inhibitor functionalities of the pepsinogen prosegment are encoded within discrete segments of the 44 residue domainDerek R Dee, Brenna Myers, Rickey Y YadaNew Biotechnology|June 4, 2009
Multifunctional aspartic peptidase prosegmentsYasumi Horimoto, Derek R Dee, Rickey Y YadaPlos One|July 2, 2014
Conserved prosegment residues stabilize a late-stage folding transition state of pepsin independently of ground statesDerek R Dee, Yasumi Horimoto, Rickey Y YadaProteins|February 22, 2023
Reframing prosegment-dependent folding and limits on natural protein folding landscapes from an evolutionary perspectiveAndrew D Sanders, Derek R Dee, Rickey Y YadaBiochimica Et Biophysica Acta|September 1, 2009
Recombinant prosegment peptide acts as a folding catalyst and inhibitor of native pepsinDerek R Dee, Shaun Filonowicz, Yasumi Horimoto, et al.The Journal of Biological Chemistry|November 23, 2013
Understanding the mechanism of prosegment-catalyzed folding by solution NMR spectroscopyShenlin Wang, Yasumi Horimoto, Derek R Dee, et al.Phytochemistry|January 19, 2010
Structure-function characterization of the recombinant aspartic proteinase A1 from Arabidopsis thalianaMiguel A Mazorra-Manzano, Takuji Tanaka, Derek R Dee, et al.Comprehensive Reviews in Food Science and Food Safety|December 22, 2022
Precision cellular agriculture: The future role of recombinantly expressed protein as foodJohn H Dupuis, Lennie K Y Cheung, Lenore Newman, et al.Pageof 9