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Inorganic Chemistry|December 8, 2004
Understanding metalloprotein folding using a de novo design strategyDebdip Ghosh, Vincent L PecoraroBiochemistry|February 11, 2014
Designing hydrolytic zinc metalloenzymesMelissa L Zastrow, Vincent L PecoraroACS Catalysis|October 9, 2018
Development of de Novo Copper Nitrite Reductases: Where We Are and Where We Need To GoKarl J Koebke, Vincent L PecoraroIsrael Journal of Chemistry|January 23, 2018
Sculpting Metal-binding Environments in De Novo Designed Three-helix BundlesJefferson S Plegaria, Vincent L PecoraroCurrent Opinion in Chemical Biology|January 13, 2015
Artificial metalloenzymes derived from three-helix bundlesAlison G Tebo, Vincent L PecoraroCoordination Chemistry Reviews|September 3, 2013
Designing functional metalloproteins: from structural to catalytic metal sitesMelissa L Zastrow, Vincent L PecoraroMethods in Molecular Biology (Clifton, N.J.)|April 21, 2016
De Novo Design of Metalloproteins and Metalloenzymes in a Three-Helix BundleJefferson S Plegaria, Vincent L PecoraroCurrent Opinion in Chemical Biology|March 21, 2025
Recent advances in de novo designed metallopeptides as tailored enzyme mimicsSalvatore La Gatta, Vincent L PecoraroJournal of the American Chemical Society|March 23, 2013
Influence of active site location on catalytic activity in de novo-designed zinc metalloenzymesMelissa L Zastrow, Vincent L PecoraroCurrent Opinion in Drug Discovery & Development|December 14, 2002
Heavy-metal complexation by de novo peptide designBrian T Farrer, Vincent L PecoraroPageof 20