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Neil R. Williamson, Peter C. Fineran, Finian J. Leeper et George P. C. Salmond, « The biosynthesis and regulation of bacterial prodiginines », Nature Reviews. Microbiology, vol. 4, no 12, , p. 887–899 (ISSN1740-1534, PMID17109029, DOI10.1038/nrmicro1531, lire en ligne, consulté le )
Francis E. Sakai-Kawada, Courtney G. Ip, Kehau A. Hagiwara et Jonathan D. Awaya, « Biosynthesis and Bioactivity of Prodiginine Analogs in Marine Bacteria, Pseudoalteromonas: A Mini Review », Frontiers in Microbiology, vol. 10, , p. 1715 (ISSN1664-302X, PMID31396200, PMCID6667630, DOI10.3389/fmicb.2019.01715, lire en ligne, consulté le )
Yu, « Serratia marcescens — Historical Perspective and Clinical Review », New England Journal of Medicine, vol. 300, no 16, , p. 887–893 (PMID370597, DOI10.1056/NEJM197904193001604)
Neil R. Williamson, Peter C. Fineran, Finian J. Leeper et George P. C. Salmond, « The biosynthesis and regulation of bacterial prodiginines », Nature Reviews. Microbiology, vol. 4, no 12, , p. 887–899 (ISSN1740-1534, PMID17109029, DOI10.1038/nrmicro1531, lire en ligne, consulté le )
« Anticancer and immunosuppressive properties of bacterial prodiginines », Future Microbiol., vol. 2, no 6, , p. 605–618 (PMID18041902, DOI10.2217/17460913.2.6.605)
Kataoka et al., « Prodigiosin 25-C uncouples vacuolar type H+-ATPase, inhibits vacuolar acidification and affects glycoprotein processing », FEBS Lett, vol. 359, no 1, , p. 53–59 (PMID7851530, DOI10.1016/0014-5793(94)01446-8)
Rastogi et al., « Synthetic prodigiosenes and the influence of C-ring substitution on DNA cleavage, transmembrane chloride transport and basicity », Org. Biomol. Chem., vol. 11, no 23, , p. 3834–3845 (PMID23640568, DOI10.1039/c3ob40477c)
Perez-Tomas et Vinas, « New Insights on the Antitumoral Properties of Prodiginines », Curr. Med. Chem., vol. 17, no 21, , p. 2222–2231 (PMID20459382, DOI10.2174/092986710791331103)
Feng, Shi, Zhang et Zhang, « Identification of new compounds with high activity against stationary phase Borrelia burgdorferi from the NCI compound collection », Emerging Microbes & Infections, vol. 4, no 5, , e31– (PMID26954881, PMCID5176177, DOI10.1038/emi.2015.31)
Francis E. Sakai-Kawada, Courtney G. Ip, Kehau A. Hagiwara et Jonathan D. Awaya, « Biosynthesis and Bioactivity of Prodiginine Analogs in Marine Bacteria, Pseudoalteromonas: A Mini Review », Frontiers in Microbiology, vol. 10, , p. 1715 (ISSN1664-302X, PMID31396200, PMCID6667630, DOI10.3389/fmicb.2019.01715, lire en ligne, consulté le )
Walsh, Garneau-Tsodikova et Howard-Jones, « Biological formation of pyrroles: Nature's logic and enzymatic machinery », Natural Product Reports, vol. 23, no 4, , p. 517–31 (PMID16874387, DOI10.1039/B605245M)
Yip, Yarkoni, Ajioka et Wan, « Recent advancements in high-level synthesis of the promising clinical drug, prodigiosin », Applied Microbiology and Biotechnology, vol. 103, no 4, , p. 1667–1680 (PMID30637495, DOI10.1007/s00253-018-09611-z, lire en ligne)
pubmed.ncbi.nlm.nih.gov
Neil R. Williamson, Peter C. Fineran, Finian J. Leeper et George P. C. Salmond, « The biosynthesis and regulation of bacterial prodiginines », Nature Reviews. Microbiology, vol. 4, no 12, , p. 887–899 (ISSN1740-1534, PMID17109029, DOI10.1038/nrmicro1531, lire en ligne, consulté le )
zenodo.org
Yip, Yarkoni, Ajioka et Wan, « Recent advancements in high-level synthesis of the promising clinical drug, prodigiosin », Applied Microbiology and Biotechnology, vol. 103, no 4, , p. 1667–1680 (PMID30637495, DOI10.1007/s00253-018-09611-z, lire en ligne)