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Kelvin J Y Wu

Showing results (1-10 of 17) with videos related to

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Organic Process Research & Development|June 29, 2026
Practical Synthesis of OxepanoprolinesKelvin J Y Wu, Priscilla Liow, Andrew G Myers
The Journal of Organic Chemistry|January 17, 2023
[3+2] Dipolar Cycloaddition of a Stabilized Azomethine Ylide and an Electron-Deficient Dipolarophile: Revision of RegioselectivityKelvin J Y Wu, Amy E Benedetto, Andrew G Myers
Biorxiv : the Preprint Server for Biology|June 12, 2025
Chemical capture of diazo metabolites reveals biosynthetic hydrazone oxidationKatarina Pfeifer, Devon Van Cura, Kelvin J Y Wu, et al.
Nature|February 4, 2026
Chemical capture of diazo metabolites reveals biosynthetic hydrazone oxidationKatarina Pfeifer, Devon Van Cura, Kelvin J Y Wu, et al.
Bioorganic & Medicinal Chemistry Letters|June 9, 2023
A method for tritiation of iboxamycin permits measurement of its ribosomal bindingKelvin J Y Wu, Dorota Klepacki, Alexander S Mankin, et al.
Journal of Global Antimicrobial Resistance|September 18, 2024
Synthetic lincosamides iboxamycin and cresomycin are active against ocular multidrug-resistant methicillin-resistant Staphylococcus aureus carrying erm genesCamille André, Kelvin J Y Wu, Andrew G Myers, et al.
Journal of the American Chemical Society|October 12, 2024
Practical Synthesis of Macrobicyclic ThiolincosaminesKelvin J Y Wu, Ben I C Tresco, Junzhe Xiao, et al.
Chembiochem : a European Journal of Chemical Biology|October 24, 2019
The l-Alanosine Gene Cluster Encodes a Pathway for Diazeniumdiolate BiosynthesisTai L Ng, Monica E McCallum, Christine R Zheng, et al.
Jac-Antimicrobial Resistance|June 23, 2022
Synthetic oxepanoprolinamide iboxamycin is active against <i>Listeria monocytogenes</i> despite the intrinsic resistance mediated by VgaL/Lmo0919 ABCF ATPaseTetiana Brodiazhenko, Kathryn Jane Turnbull, Kelvin J Y Wu, et al.
Nature Chemistry|March 7, 2025
Discovery of a fluorinated macrobicyclic antibiotic through chemical synthesisBen I C Tresco, Kelvin J Y Wu, Antonio Ramkissoon, et al.
Pageof 2

Showing results (1-10 of 17) with videos related to

Sort By:
Pageof 2
Organic Process Research & Development|June 29, 2026
Practical Synthesis of OxepanoprolinesKelvin J Y Wu, Priscilla Liow, Andrew G Myers
The Journal of Organic Chemistry|January 17, 2023
[3+2] Dipolar Cycloaddition of a Stabilized Azomethine Ylide and an Electron-Deficient Dipolarophile: Revision of RegioselectivityKelvin J Y Wu, Amy E Benedetto, Andrew G Myers
Biorxiv : the Preprint Server for Biology|June 12, 2025
Chemical capture of diazo metabolites reveals biosynthetic hydrazone oxidationKatarina Pfeifer, Devon Van Cura, Kelvin J Y Wu, et al.
Nature|February 4, 2026
Chemical capture of diazo metabolites reveals biosynthetic hydrazone oxidationKatarina Pfeifer, Devon Van Cura, Kelvin J Y Wu, et al.
Bioorganic & Medicinal Chemistry Letters|June 9, 2023
A method for tritiation of iboxamycin permits measurement of its ribosomal bindingKelvin J Y Wu, Dorota Klepacki, Alexander S Mankin, et al.
Journal of Global Antimicrobial Resistance|September 18, 2024
Synthetic lincosamides iboxamycin and cresomycin are active against ocular multidrug-resistant methicillin-resistant Staphylococcus aureus carrying erm genesCamille André, Kelvin J Y Wu, Andrew G Myers, et al.
Journal of the American Chemical Society|October 12, 2024
Practical Synthesis of Macrobicyclic ThiolincosaminesKelvin J Y Wu, Ben I C Tresco, Junzhe Xiao, et al.
Chembiochem : a European Journal of Chemical Biology|October 24, 2019
The l-Alanosine Gene Cluster Encodes a Pathway for Diazeniumdiolate BiosynthesisTai L Ng, Monica E McCallum, Christine R Zheng, et al.
Jac-Antimicrobial Resistance|June 23, 2022
Synthetic oxepanoprolinamide iboxamycin is active against <i>Listeria monocytogenes</i> despite the intrinsic resistance mediated by VgaL/Lmo0919 ABCF ATPaseTetiana Brodiazhenko, Kathryn Jane Turnbull, Kelvin J Y Wu, et al.
Nature Chemistry|March 7, 2025
Discovery of a fluorinated macrobicyclic antibiotic through chemical synthesisBen I C Tresco, Kelvin J Y Wu, Antonio Ramkissoon, et al.
Pageof 2