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Current Opinion in Chemical Biology|October 31, 2007
Knotted and topologically complex proteins as models for studying folding and stabilityTodd O Yeates, Todd S Norcross, Neil P KingJournal of Molecular Biology|August 26, 2006
A framework for describing topological frustration in models of protein foldingTodd S Norcross, Todd O YeatesTrends in Cell Biology|September 15, 2012
Principles for designing ordered protein assembliesYen-Ting Lai, Neil P King, Todd O YeatesJournal of Molecular Biology|September 4, 2007
Identification of rare slipknots in proteins and their implications for stability and foldingNeil P King, Eric O Yeates, Todd O YeatesProtein Engineering, Design & Selection : PEDS|June 15, 2011
Protein stabilization in a highly knotted protein polymerTobias C Sayre, Toni M Lee, Neil P King, et al.Proceedings of the National Academy of Sciences of the United States of America|November 12, 2010
Structure and folding of a designed knotted proteinNeil P King, Alex W Jacobitz, Michael R Sawaya, et al.Journal of Molecular Biology|June 3, 2008
Structures and functional implications of an AMP-binding cystathionine beta-synthase domain protein from a hyperthermophilic archaeonNeil P King, Toni M Lee, Michael R Sawaya, et al.Current Biology : CB|January 24, 2007
Protein structure: evolutionary bridges to new foldsTodd O YeatesCell|October 10, 2002
Structures of SET domain proteins: protein lysine methyltransferases make their markTodd O YeatesAnnual Review of Biophysics|March 17, 2017
Geometric Principles for Designing Highly Symmetric Self-Assembling Protein NanomaterialsTodd O YeatesPageof 29