Christopher J. Petzold, Ph.D.

Affiliations: 
2002 Purdue University, West Lafayette, IN, United States 
Area:
Analytical Chemistry
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"Christopher Petzold"
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Parents

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Hilkka I. Kenttämaa grad student 2002 Purdue
 (Gas-phase ion -molecule reaction studies and development of laser -induced acoustic desorption of neutral organic molecules for FT -ICR mass spectrometry.)
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Publications

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Zargar A, Lal R, Valencia LE, et al. (2020) Chemoinformatic-guided engineering of polyketide synthases. Journal of the American Chemical Society
Chen Y, Guenther JM, Gin JW, et al. (2019) An automated 'cells-to-peptides' sample preparation workflow for high-throughput, quantitative proteomic assays of microbes. Journal of Proteome Research
Dong J, Chen Y, Benites VT, et al. (2019) Methyl ketone production by Pseudomonas putida is enhanced by plant-derived amino acids. Biotechnology and Bioengineering
Chen Y, Vu J, Thompson MG, et al. (2019) A rapid methods development workflow for high-throughput quantitative proteomic applications. Plos One. 14: e0211582
Zargar K, Saville R, Phelan RM, et al. (2016) In vitro Characterization of Phenylacetate Decarboxylase, a Novel Enzyme Catalyzing Toluene Biosynthesis in an Anaerobic Microbial Community. Scientific Reports. 6: 31362
Hagen A, Poust S, Rond T, et al. (2015) Engineering a Polyketide Synthase for In Vitro Production of Adipic Acid. Acs Synthetic Biology
González Fernández-Niño SM, Smith-Moritz AM, Chan LJ, et al. (2015) Standard flow liquid chromatography for shotgun proteomics in bioenergy research. Frontiers in Bioengineering and Biotechnology. 3: 44
Poust S, Phelan RM, Deng K, et al. (2015) Divergent mechanistic routes for the formation of gem-dimethyl groups in the biosynthesis of complex polyketides. Angewandte Chemie (International Ed. in English). 54: 2370-3
Alonso-Gutierrez J, Kim EM, Batth TS, et al. (2015) Principal component analysis of proteomics (PCAP) as a tool to direct metabolic engineering. Metabolic Engineering. 28: 123-33
Weaver LJ, Sousa MM, Wang G, et al. (2015) A kinetic-based approach to understanding heterologous mevalonate pathway function in E. coli. Biotechnology and Bioengineering. 112: 111-9
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