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ACS Catalysis|February 11, 2021
Molecular Basis of Iterative C─H Oxidation by TamI, a Multifunctional P450 monooxygenase from the Tirandamycin Biosynthetic PathwaySean A Newmister, Kinshuk Raj Srivastava, Rosa V Espinoza, et al.ACS Catalysis|January 10, 2022
Engineering P450 TamI as an Iterative Biocatalyst for Selective Late-Stage C-H Functionalization and Epoxidation of Tirandamycin AntibioticsRosa V Espinoza, Kersti Caddell Haatveit, S Wald Grossman, et al.Chembiochem : a European Journal of Chemical Biology|April 29, 2014
Crystal structures of acyl carrier protein in complex with two catalytic partners show a dynamic role in cellular metabolismSean A Newmister, David H ShermanThe FEBS Journal|March 3, 2020
Enzyme evolution in fungal indole alkaloid biosynthesisAmy E Fraley, David H ShermanCurrent Opinion in Biotechnology|June 5, 2013
Meta-omic characterization of prokaryotic gene clusters for natural product biosynthesisMichael M Schofield, David H ShermanNatural Product Reports|July 24, 2012
Diversity of P450 enzymes in the biosynthesis of natural productsLarissa M Podust, David H ShermanBioorganic & Medicinal Chemistry|November 26, 2008
The methymycin/pikromycin pathway: a model for metabolic diversity in natural product biosynthesisJeffrey D Kittendorf, David H ShermanThe Journal of Organic Chemistry|October 2, 2010
Frontiers and opportunities in chemoenzymatic synthesisJonathan D Mortison, David H ShermanChembiochem : a European Journal of Chemical Biology|May 10, 2005
Utilizing the power of microbial genetics to bridge the gap between the promise and the application of marine natural productsJ L Fortman, David H ShermanCurrent Opinion in Biotechnology|October 19, 2006
Developing tools for engineering hybrid polyketide synthetic pathwaysJeffrey D Kittendorf, David H ShermanPageof 27