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  • Author: Jacob MR
  • References

Author: Jacob MR


References 10 references


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  • Tripathi SK, et al. (2017) Two plant-derived aporphinoid alkaloids exert their antifungal activity by disrupting mitochondrial iron-sulfur cluster biosynthesis. J Biol Chem 292(40):16578-16593 PMID:28821607
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  • Bolden S, et al. (2013) Structure-activity relationship (SAR) and preliminary mode of action studies of 3-substituted benzylthioquinolinium iodide as anti-opportunistic infection agents. Eur J Med Chem 70:130-42 PMID:24141203
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  • Agarwal AK, et al. (2012) Exploring the molecular basis of antifungal synergies using genome-wide approaches. Front Microbiol 3:115 PMID:22470373
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  • Xu T, et al. (2012) A potent plant-derived antifungal acetylenic acid mediates its activity by interfering with fatty acid homeostasis. Antimicrob Agents Chemother 56(6):2894-907 PMID:22430960
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  • Xu T, et al. (2011) The marine sponge-derived polyketide endoperoxide plakortide F acid mediates its antifungal activity by interfering with calcium homeostasis. Antimicrob Agents Chemother 55(4):1611-21 PMID:21300833
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  • Digirolamo JA, et al. (2009) Reversal of fluconazole resistance by sulfated sterols from the marine sponge Topsentia sp. J Nat Prod 72(8):1524-8 PMID:19653640
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  • Agarwal AK, et al. (2008) Genomic and genetic approaches for the identification of antifungal drug targets. Infect Disord Drug Targets 8(1):2-15 PMID:18473903
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  • Agarwal AK, et al. (2008) Role of heme in the antifungal activity of the azaoxoaporphine alkaloid sampangine. Eukaryot Cell 7(2):387-400 PMID:18156292
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  • Li XC, et al. (2006) Capisterones A and B, which enhance fluconazole activity in Saccharomyces cerevisiae, from the marine green alga Penicillus capitatus. J Nat Prod 69(4):542-6 PMID:16643022
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  • Agarwal AK, et al. (2003) Genome-wide expression profiling of the response to polyene, pyrimidine, azole, and echinocandin antifungal agents in Saccharomyces cerevisiae. J Biol Chem 278(37):34998-5015 PMID:12824174
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