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- Utilizing an iron(iii)-chelation masking strategy to prepare mono- and bis-functionalized aerobactin analogues for targeting pathogenic bacteria. Yu-Hin Ho, Sheng-Yang Ho, Cheng-Chih Hsu, Jiun-Jie Shie, Tsung-Shing Andrew Wang
, Chem. Commun.
, 2017
, 53
, 9265
- Back to the metal age: battle for metals at the host–pathogen interface during urinary tract infection. Sargurunathan Subashchandrabose, Harry L. T. Mobley
, Metallomics
, 2015
, 7
, 935
- The long-overlooked enzymology of a nonribosomal peptide synthetase-independent pathway for virulence-conferring siderophore biosynthesis. Daniel Oves-Costales, Nadia Kadi, Gregory L. Challis
, Chem. Commun.
, 2009
, 6530
- Metal binding ability of microbial natural metal chelators and potential applications. Marika Hofmann, Gerardo Retamal-Morales, Dirk Tischler
, Nat. Prod. Rep.
, 2020
, 37
, 1262
- Chemistry and biology of siderophores. Robert C. Hider, Xiaole Kong
, Nat. Prod. Rep.
, 2010
, 27
, 637
- The role of transition metal transporters for iron, zinc, manganese, and copper in the pathogenesis of Yersinia pestis. Robert D. Perry, Alexander G. Bobrov, Jacqueline D. Fetherston
, Metallomics
, 2015
, 7
, 965
- Evaluation of photo-reactive siderophore producing bacteria before, during and after a bloom of the dinoflagellate Lingulodinium polyedrum. Kyoko Yarimizu, Geraldine Polido, Astrid Gärdes, Melissa L. Carter, Mary Hilbern, Carl J. Carrano
, Metallomics
, 2014
, 6
, 1156
- Nonribosomal peptide synthetase biosynthetic clusters of ESKAPE pathogens. Andrew M. Gulick
, Nat. Prod. Rep.
, 2017
, 34
, 981
- Iron and zinc exploitation during bacterial pathogenesis. Li Ma, Austen Terwilliger, Anthony W. Maresso
, Metallomics
, 2015
, 7
, 1541
- Beyond iron: non-classical biological functions of bacterial siderophores. Timothy C. Johnstone, Elizabeth M. Nolan
, Dalton Trans.
, 2015
, 44
, 6320