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PMID: 11870854 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

ABC transporters Cdr1p, Cdr2p and Cdr3p of a human pathogen Candida albicans are general phospholipid translocators.

Yeast (Chichester, England) ·Vol. 19 ·No. 4 ·2002-03-15 ·Pages 303-18

Smriti, Krishnamurthy S, Dixit BL, Gupta CM, Milewski S, Prasad R

Abstract

We have used fluorescent 7-nitrobenz-2-oxa-1,3-diazol-4-yl (NBD)-tagged phospholipid analogues, NBD-PE (phosphatidylethanolamine), NBD-PC (phosphatidylcholine) and NBD-PS (phosphatidylserine), to demonstrate that Cdr1p and its other homologues, Cdr2p and Cdr3p, belonging to the ATP-binding cassette (ABC) superfamily behave as general phospholipid translocators. Interestingly, CDR1 and CDR2, whose overexpression leads to azole resistance in C. albicans, elicit in-to-out transbilayer phospholipid movement, while CDR3, which is not involved in drug resistance, carries out-to-in translocation of phospholipids between the two monolayers of plasma membrane. Cdr1p, Cdr2p and Cdr3p could be further distinguished on the basis of their sensitivities to different inhibitors. For example, the in-to-out activity associated with Cdr1p and Cdr2p is energy-dependent and sensitive to sulphydryl blocking agents such as N-ethylmaleimide (NEM) and cytoskeleton disrupting agent cytochalasin E, while Cdr3p-associated out-to-in activity is energy-dependent but insensitive to NEM and cytochalasin E. We found that certain drugs, such as fluconazole, cycloheximide and miconazole, to which Cdr1p confers resistance could also affect in-to-out transbilayer movement of NBD-PE, while the same drugs had no effect on Cdr3p-mediated out-to-in translocation of NBD-PE. The ineffectiveness of these drugs to affect Cdr3p mediated out-to-in phospholipid translocation further confirms the inherent difference in the directionality of phospholipid translocation between these pumps. Notwithstanding the role of some of the Cdrps in drug resistance, this study clearly demonstrates that these ABC transporters of C. albicans are phospholipid translocators and this function could represent one of the physiological functions of such large family of proteins.

MeSH Terms
ATP-Binding Cassette Transporters/genetics,physiology Antifungal Agents/pharmacology Biological Transport Candida albicans/metabolism Carrier Proteins/physiology Cytoskeleton/physiology Fungal Proteins Humans Lipid Bilayers/metabolism Membrane Proteins/physiology Membrane Transport Proteins/genetics,physiology Phospholipid Transfer Proteins Phospholipids/metabolism Saccharomyces cerevisiae/genetics Transformation, Genetic
Chemicals
ATP-Binding Cassette Transporters Antifungal Agents CDR1 protein, Candida albicans Carrier Proteins Cdr3 protein, Candida albicans Fungal Proteins Lipid Bilayers Membrane Proteins Membrane Transport Proteins Phospholipid Transfer Proteins Phospholipids
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Smriti
Membrane Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi-110067 India. [email protected]
Krishnamurthy S
Dixit B L
Gupta C M
Milewski S
Prasad R
Article Info
Journal
Yeast (Chichester, England)
Abbr.
Yeast
ISSN
0749-503X
Published
2002-03-15
Pages
303-18
Language
English
Region
England
NLM ID
8607637
Subset
IM
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