Jesus F. Barajas, Ph.D.
Affiliations: | 2015 | Biological Sciences | University of California, Irvine, Irvine, CA |
Area:
Biochemistry, Molecular BiologyGoogle:
"Jesus Barajas"Parents
Sign in to add mentorShiou-Chuan Tsai | grad student | 2015 | UC Irvine | |
(Biochemical and Structural Elucidation of Polyketide Synthase and Non-Ribosomal Peptide Synthetase Enzymes Using Novel Pantetheine Analogues.) |
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Publications
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Thompson MG, Blake-Hedges JM, Pereira JH, et al. (2020) An iron (II) dependent oxygenase performs the last missing step of plant lysine catabolism. Nature Communications. 11: 2931 |
Zargar A, Lal R, Valencia LE, et al. (2020) Chemoinformatic-guided engineering of polyketide synthases. Journal of the American Chemical Society |
Blake-Hedges JM, Pereira JH, Cruz-Morales P, et al. (2019) Structural mechanism of regioselectivity in an unusual bacterial acyl-CoA dehydrogenase. Journal of the American Chemical Society |
Snoek T, Chaberski EK, Ambri F, et al. (2019) Evolution-guided engineering of small-molecule biosensors. Nucleic Acids Research |
Milligan JC, Lee DJ, Jackson DR, et al. (2019) Molecular basis for interactions between an acyl carrier protein and a ketosynthase. Nature Chemical Biology |
Barajas JF, McAndrew RP, Thompson MG, et al. (2019) Structural insights into dehydratase substrate selection for the borrelidin and fluvirucin polyketide synthases. Journal of Industrial Microbiology & Biotechnology |
Thompson MG, Blake-Hedges JM, Cruz-Morales P, et al. (2019) Massively Parallel Fitness Profiling Reveals Multiple Novel Enzymes in Lysine Metabolism. Mbio. 10 |
Barajas JF, Zargar A, Pang B, et al. (2018) Biochemical Characterization of β-Amino Acid Incorporation in Fluvirucin B2 Biosynthesis. Chembiochem : a European Journal of Chemical Biology |
Barajas JF, Blake-Hedges JM, Bailey CB, et al. (2017) Engineered polyketides: Synergy between protein and host level engineering. Synthetic and Systems Biotechnology. 2: 147-166 |
Yuzawa S, Bailey CB, Fujii T, et al. (2017) Heterologous Gene Expression of N-terminally truncated variants of LipPks1 Suggests a Functionally Critical Structural Motif in the N-terminus of Modular Polyketide Synthase. Acs Chemical Biology |