Expression of the CDR1 efflux pump in clinical Candida albicans isolates is controlled by a negative regulatory element

Gaur, Naseem Akhtar ; Manoharlal, Raman ; Saini, Preeti ; Prasad, Tulika ; Mukhopadhyay, Gauranga ; Hoefer, Milan ; Morschhäuser, Joachim ; Prasad, Rajendra (2005) Expression of the CDR1 efflux pump in clinical Candida albicans isolates is controlled by a negative regulatory element Biochemical and Biophysical Research Communications, 332 (1). pp. 206-214. ISSN 0006-291X

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Official URL: http://linkinghub.elsevier.com/retrieve/pii/s0006-...

Related URL: http://dx.doi.org/10.1016/j.bbrc.2005.04.113

Abstract

Resistance to azole antifungal drugs in clinical isolates of the human fungal pathogen Candida albicans is often caused by constitutive overexpression of the CDR1 gene, which encodes a multidrug efflux pump of the ABC transporter superfamily. To understand the relevance of a recently identified negative regulatory element (NRE) in the CDR1 promoter for the control of CDR1 expression in the clinical scenario, we investigated the effect of mutation or deletion of the NRE on CDR1 expression in two matched pairs of azole-sensitive and resistant clinical isolates of C. albicans. Expression of GFP or lacZ reporter genes from the wild type CDR1 promoter was much higher in the azole-resistant C. albicans isolates than in the azole-susceptible isolates, reflecting the known differences in CDR1 expression in these strains. Deletion or mutation of the NRE resulted in enhanced reporter gene expression in azole-sensitive strains, but did not further increase the already high CDR1 promoter activity in the azole-resistant strains. In agreement with these findings, electrophoretic mobility shift assays showed a reduced binding to the NRE of nuclear extracts from the resistant C. albicans isolates as compared with extracts from the sensitive isolates. These results demonstrate that the NRE is involved in maintaining CDR1 expression at basal levels and that this repression is overcome in azole-resistant clinical C. albicans isolates, resulting in constitutive CDR1 overexpression and concomitant drug resistance.

Item Type:Article
Source:Copyright of this article belongs to Elsevier Science.
Keywords:Candida albicans; CDR1; Multidrug Resistance; Promoter; Regulation
ID Code:39341
Deposited On:10 May 2011 12:12
Last Modified:10 May 2011 12:12

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