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Methods in Enzymology|August 18, 2024
Discovery, isolation, and characterization of diazeniumdiolate siderophoresMelanie Susman, Jin Yan, Christina Makris, et al.
Biomaterials Science|December 22, 2017
Catechol oxidation: considerations in the design of wet adhesive materialsGreg P Maier, Christopher M Bernt, Alison Butler
Biometals : an International Journal on the Role of Metal Ions in Biology, Biochemistry, and Medicine|September 21, 2010
Identification of new members within suites of amphiphilic marine siderophoresJulia M Vraspir, Pamela D Holt, Alison Butler
ACS Infectious Diseases|August 14, 2025
Periplasmic Binding Protein YiuA Enables <i>Yersinia pestis</i> to Scavenge Fe(III)-Catechol SiderophoresEmil Thomsen, Parker Stow, Daniel Roth, et al.
Langmuir : the ACS Journal of Surfaces and Colloids|December 14, 2005
Micelle-to-vesicle transition of an iron-chelating microbial surfactant, marinobactin ETate Owen, Roger Pynn, Jennifer S Martinez, et al.
Journal of the American Chemical Society|January 17, 2002
Petrobactin, a photoreactive siderophore produced by the oil-degrading marine bacterium Marinobacter hydrocarbonoclasticusKatherine Barbeau, Guangping Zhang, David H Live, et al.
Journal of Inorganic Biochemistry|November 21, 2025
Substrate flexibility of the catechol siderophore periplasmic binding proteins, RupB and YiuA from Yersinia ruckeri YRBEmil Thomsen, Parker R Stow, Maren Cukor, et al.
ACS Chemical Biology|November 10, 2022
<i>C</i>-Diazeniumdiolate Graminine in the Siderophore Gramibactin Is Photoreactive and Originates from ArginineChristina Makris, Jeffrey R Carmichael, Hongjun Zhou, et al.
Biochemistry|April 17, 2014
Microbial tailoring of acyl peptidic siderophoresJulia M Gauglitz, Akira Iinishi, Yusai Ito, et al.
Pediatrics|May 8, 2021
Predictors of Deceased Organ Donation in the Pediatric PopulationJustin Godown, Alison Butler, Daniel J Lebovitz, et al.
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