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1.
Biol Pharm Bull ; 37(2): 268-73, 2014.
Article in English | MEDLINE | ID: mdl-24492724

ABSTRACT

Over-expression of the Candida drug resistance gene CDR1 is a common mechanism generating azole-resistant Candida albicans in clinical isolates. CDR1 is transcriptionally activated through the binding of the transcription factor Tac1p to the cis-acting drug-responsive element (DRE) in its promoter. We previously demonstrated that the combination of fluconazole (FLC) and berberine (BBR) produced significant synergy when used against FLC-resistant C. albicans in vitro. In this study, we found that BBR inhibited both the up-regulation of CDR1 mRNA and the transport function of Cdr1p induced by fluphenazine (FNZ). Further, electrophoretic mobility shift assays suggested that the transcription activation complex of protein-DRE was disrupted by BBR, and electrospray ionization mass spectrometry analysis showed that BBR bound to the DRE of CDR1. Thus we propose that BBR inhibits the FNZ-induced transcriptional activation of CDR1 in C. albicans by blocking transcription factor binding to the DRE of CDR1. These results contribute to our understanding of the mechanism of synergistic effect of BBR and FLC.


Subject(s)
Antifungal Agents/pharmacology , Berberine/pharmacology , Candida albicans/drug effects , Drug Resistance, Fungal/drug effects , Fluphenazine/adverse effects , Fungal Proteins/metabolism , Membrane Transport Proteins/metabolism , Plant Extracts/pharmacology , Candida albicans/metabolism , Drug Synergism , Fluphenazine/therapeutic use , Fungal Proteins/genetics , Gene Expression Regulation, Fungal , Membrane Transport Proteins/genetics , RNA, Messenger/metabolism , Transcriptional Activation/drug effects , Up-Regulation
2.
Yao Xue Xue Bao ; 49(11): 1563-8, 2014 Nov.
Article in Chinese | MEDLINE | ID: mdl-25757282

ABSTRACT

Abstract: Our previous work revealed berberine can significantly enhance the susceptibility of fluconazole against fluconazole-resistant Candida albicans, which suggested that berberine has synergistic antifungal activity with fluconazole. Preliminary SAR of berberine needs to be studied for the possibility of investigating its target and SAR, improving its drug-likeness, and exploring new scaffold. In this work, 13-substitutited benzyl berberine derivatives and N-benzyl isoquinoline analogues were synthesized and characterized by 1H NMR and MS. Their synergetic activity with fluconazole against fluconazole-resistant Candida albicans was evaluated in vitro. The 13-substitutited benzyl berberine derivatives 1a-1e exhibited comparable activity to berberine, which suggested that the introduction of functional groups to C-13 can maintain its activity. The N-benzyl isoquinolines, which were designed as analogues of berberine with its D ring opened, exhibited lower activity than berberine. However, compound 2b, 2c, and 4b showed moderate activity, which indicated that berberine may be deconstructed to new scaffold with synergistic antifungal activity with fluconazole. The results of our research may be helpful to the SAR studies on its other biological activities.


Subject(s)
Antifungal Agents/pharmacology , Berberine/pharmacology , Candida albicans/drug effects , Fluconazole/pharmacology , Drug Resistance, Fungal , Drug Synergism , Isoquinolines/pharmacology , Microbial Sensitivity Tests
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