Janet L. Smith

Biological Sciences Purdue University, West Lafayette, IN, United States 
"Janet L. Smith"


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Muttaiya (Sunda) Sundaralingam grad student 1978 UW Madison (Chemistry Tree)
Wayne A. Hendrickson post-doc Naval Research Laboratory (Chemistry Tree)


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John J. Tesmer grad student 1990-1995 Purdue
Sangita Sinha grad student 2000 Purdue
Jianghai Zhu grad student 2005 Purdue
Preethi Chander grad student 2006 Purdue
Tanya Elizabeth Susan Dahms post-doc 1996-1998 (Chemistry Tree)
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Fraley A, Caddell Haatveit K, Ye Y, et al. (2020) Molecular basis for spirocycle formation in the paraherquamide biosynthetic pathway. Journal of the American Chemical Society
Skiba MA, Tran CL, Dan Q, et al. (2019) Repurposing the GNAT Fold in the Initiation of Polyketide Biosynthesis. Structure (London, England : 1993)
Dan Q, Newmister SA, Klas KR, et al. (2019) Fungal indole alkaloid biogenesis through evolution of a bifunctional reductase/Diels-Alderase. Nature Chemistry
Skiba MA, Bivins MM, Schultz JR, et al. (2018) Structural Basis of Polyketide Synthase O-Methylation. Acs Chemical Biology
Newmister SA, Romminger S, Schmidt JJ, et al. (2018) Unveiling sequential late-stage methyltransferase reactions in the meleagrin/oxaline biosynthetic pathway. Organic & Biomolecular Chemistry
Skiba MA, Maloney FP, Dan Q, et al. (2018) PKS-NRPS Enzymology and Structural Biology: Considerations in Protein Production. Methods in Enzymology. 604: 45-88
Slocum ST, Lowell AN, Tripathi AN, et al. (2018) Chemoenzymatic Dissection of Polyketide β-Branching in the Bryostatin Pathway. Methods in Enzymology. 604: 207-236
Sherman DH, Tripathi A, Park SR, et al. (2018) A Defined and Flexible Pocket Explains Aryl Substrate Promiscuity by the Cahuitamycin Starter Unit Activating Enzyme CahJ. Chembiochem : a European Journal of Chemical Biology
Skiba MA, Sikkema AP, Moss NA, et al. (2018) Biosynthesis of t-Butyl in Apratoxin A: Functional Analysis and Architecture of a PKS Loading Module. Acs Chemical Biology
Newmister SA, Li S, Garcia-Borràs M, et al. (2018) Structural basis of the Cope rearrangement and cyclization in hapalindole biogenesis. Nature Chemical Biology
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