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  • Author: Aouida M
  • References

Author: Aouida M


References 22 references


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  • Manzoor Y, et al. (2024) Loss of the yeast transporter Agp2 upregulates the pleiotropic drug-resistant pump Pdr5 and confers resistance to the protein synthesis inhibitor cycloheximide. PLoS One 19(5):e0303747 PMID:38776347
    • SGD Paper
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  • Mohanty A, et al. (2023) The Yeast Permease Agp2 Senses Cycloheximide and Undergoes Degradation That Requires the Small Protein Brp1-Cellular Fate of Agp2 in Response to Cycloheximide. Int J Mol Sci 24(8) PMID:37108141
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  • Sulaiman AA, et al. (2023) Mft1, identified from a genome-wide screen of the yeast haploid mutants, mediates cell cycle arrest to counteract quinoxaline-induced toxicity. Front Genet 14:1296383 PMID:38283148
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  • Alhaj Sulaiman A, et al. (2022) The histone H2B Arg95 residue links the pheromone response pathway to rapamycin-induced G1 arrest in yeast. Sci Rep 12(1):10023 PMID:35705668
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  • Aouida M and Ramotar D (2022) A Screening Method to Identify Essential Yeast Genes for Responses Towards Spermine. Methods Mol Biol 2377:363-369 PMID:34709627
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  • Aouida M, et al. (2019) Yeast Lacking the PP2A Phosphatase Regulatory Subunit Rts1 Sensitizes rad51 Mutants to Specific DNA Damaging Agents. Front Genet 10:1117 PMID:31781172
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  • Aouida M and Ramotar D (2018) Identification of essential yeast genes involved in polyamine resistance. Gene 677:361-369 PMID:30153484
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  • Aouida M, et al. (2015) Transcription activator-like effector nucleases mediated metabolic engineering for enhanced fatty acids production in Saccharomyces cerevisiae. J Biosci Bioeng 120(4):364-71 PMID:25907574
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  • Aouida M, et al. (2014) Activities and specificities of homodimeric TALENs in Saccharomyces cerevisiae. Curr Genet 60(2):61-74 PMID:24081604
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  • Aouida M, et al. (2013) A Saccharomyces cerevisiae assay system to investigate ligand/AdipoR1 interactions that lead to cellular signaling. PLoS One 8(6):e65454 PMID:23762377
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  • Aouida M, et al. (2013) Agp2, a member of the yeast amino acid permease family, positively regulates polyamine transport at the transcriptional level. PLoS One 8(6):e65717 PMID:23755272
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  • Mulangi V, et al. (2012) Functional analysis of OsPUT1, a rice polyamine uptake transporter. Planta 235(1):1-11 PMID:21796369
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  • Aouida M and Ramotar D (2010) A new twist in cellular resistance to the anticancer drug bleomycin-A5. Curr Drug Metab 11(7):595-602 PMID:20812903
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  • Aouida M, et al. (2010) The human carnitine transporter SLC22A16 mediates high affinity uptake of the anticancer polyamine analogue bleomycin-A5. J Biol Chem 285(9):6275-84 PMID:20037140
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  • Aouida M, et al. (2009) Novel role for the Saccharomyces cerevisiae oligopeptide transporter Opt2 in drug detoxification. Biochem Cell Biol 87(4):653-61 PMID:19767828
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  • Aouida M, et al. (2007) Mitochondria-independent morphological and biochemical apoptotic alterations promoted by the anti-tumor agent bleomycin in Saccharomyces cerevisiae. Biochem Cell Biol 85(1):49-55 PMID:17464344
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  • Tounekti K, et al. (2006) Deletion of the chromatin remodeling gene SPT10 sensitizes yeast cells to a subclass of DNA-damaging agents. Environ Mol Mutagen 47(9):707-17 PMID:17078097
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  • Aouida M, et al. (2005) AGP2 encodes the major permease for high affinity polyamine import in Saccharomyces cerevisiae. J Biol Chem 280(25):24267-76 PMID:15855155
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  • Aouida M, et al. (2004) Characterization of a transport and detoxification pathway for the antitumour drug bleomycin in Saccharomyces cerevisiae. Biochem J 384(Pt 1):47-58 PMID:15248838
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  • Aouida M, et al. (2004) Isolation and characterization of Saccharomyces cerevisiae mutants with enhanced resistance to the anticancer drug bleomycin. Curr Genet 45(5):265-72 PMID:15007625
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  • Aouida M, et al. (2004) A genome-wide screen in Saccharomyces cerevisiae reveals altered transport as a mechanism of resistance to the anticancer drug bleomycin. Cancer Res 64(3):1102-9 PMID:14871844
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    • Reference supplement
  • Aouida M, et al. (2003) Comparative roles of the cell wall and cell membrane in limiting uptake of xenobiotic molecules by Saccharomyces cerevisiae. Antimicrob Agents Chemother 47(6):2012-4 PMID:12760888
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