David B. Berkowitz
Affiliations: | The University of Nebraska - Lincoln, Lincoln, NE |
Area:
Organic Chemistry, Chemical BiologyGoogle:
"David Berkowitz"Mean distance: 4423.67
Parents
Sign in to add mentorSteven A. Benner | grad student | 1990 | Harvard |
Samuel J. Danishefsky | post-doc | 1990-1991 | Yale |
Children
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Publications
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Ramos de Dios SM, Hass JL, Graham DL, et al. (2023) Information-Rich, Dual-Function C/H-Isotopic Crosstalk NMR Assay for Human Serine Racemase (hSR) Provides a PLP-Enzyme "Partitioning Fingerprint" and Reveals Disparate Chemotypes for hSR Inhibition. Journal of the American Chemical Society |
Ramos De Dios SM, Tiwari VK, McCune CD, et al. (2022) Biomacromolecule-Assisted Screening for Reaction Discovery and Catalyst Optimization. Chemical Reviews |
Tiwari VK, Powell DR, Broussy S, et al. (2021) Rapid Enantioselective and Diastereoconvergent Hybrid Organic/Biocatalytic Entry into the Oseltamivir Core. The Journal of Organic Chemistry. 86: 6494-6503 |
Kudalkar GP, Tiwari VK, Lee JD, et al. (2020) A Hammett Study of Clostridium acetobutylicum Alcohol Dehydrogenase (CaADH): An Enzyme with Remarkable Substrate Promiscuity and Utility for Organic Synthesis Synlett. 31: 237-247 |
Dasgupta M, Budday D, de Oliveira SHP, et al. (2019) Mix-and-inject XFEL crystallography reveals gated conformational dynamics during enzyme catalysis. Proceedings of the National Academy of Sciences of the United States of America |
Panigrahi K, Fei X, Kitamura M, et al. (2019) Rapid Entry into Biologically Relevant α,α-Difluoroalkylphosphonates Bearing Allyl Protection-Deblocking under Ru(II)/(IV)-Catalysis. Organic Letters |
Graham DL, Beio ML, Nelson DL, et al. (2019) Human Serine Racemase: Key Residues/Active Site Motifs and Their Relation to Enzyme Function. Frontiers in Molecular Biosciences. 6: 8 |
Tu Y, Kreinbring CA, Hill M, et al. (2018) Crystal Structures of Cystathionine β-Synthase from Saccharomyces cerevisiae: One Enzymatic Step at a Time. Biochemistry |
Malik G, Swyka RA, Tiwari VK, et al. (2017) A Thiocyanopalladation/Carbocyclization Transformation Identified Through Enzymatic Screening: Stereocontrolled Tandem C–SCN and C–C Bond Formation Chemical Science. 8: 8050-8060 |
Malik G, Swyka RA, Tiwari VK, et al. (2017) A thiocyanopalladation/carbocyclization transformation identified through enzymatic screening: stereocontrolled tandem C-SCN and C-C bond formation. Chemical Science. 8: 8050-8060 |