Target intelligence / Profile preview

Parasite ATP-binding cassette transporter (ABC transporter) (ABC transporter)

Target
ABC transporter
Molecular classification
Transporter, ATP-binding cassette superfamily
01

Overview

Parasite ATP-binding cassette (ABC) transporters are essential transmembrane proteins that utilize the energy derived from ATP hydrolysis to translocate various substrates across biological membranes [1, 4]. In pathogenic parasites such as Plasmodium falciparum, Leishmania spp., and parasitic helminths, these transporters—particularly P-glycoprotein-like efflux pumps—function as a primary defense mechanism against antiparasitic drugs [1, 3]. By actively pumping out toxic compounds, these proteins reduce the intracellular concentration of essential medications like chloroquine, mefloquine, and ivermectin, leading to the development of multidrug resistance (MDR) [2, 3]. Consequently, these transporters are significant therapeutic targets; inhibiting their activity can chemosensitize parasites and restore the efficacy of existing treatments [1, 5]. However, the high degree of conservation between parasite ABC transporters and human homologs, such as the human multidrug resistance protein 1 (MDR1), necessitates the development of highly selective inhibitors to avoid systemic toxicity and adverse drug-drug interactions in the host [3, 4].

Other names
P-glycoprotein-like efflux pumpMultidrug resistance proteinMDR proteinABC superfamily transporterEfflux pumpParasite P-glycoprotein
02

Mechanism of action

Inhibition of ATP-dependent efflux to increase intracellular drug concentration and restore parasite sensitivity to antiparasitic agents [1, 3].

03

Biological functions

Xenobiotic effluxActive transportDetoxificationLipid transportIon homeostasisNutrient uptake
04

Disease associations

InfectionAntimicrobial resistanceMalariaLeishmaniasisHelminthiasisTrypanosomiasis
05

Safety considerations

Off-target inhibition of human ABC transporters (e.g., ABCB1/P-gp) [3]Increased systemic toxicity of co-administered drugs due to altered host pharmacokinetics [4]Potential disruption of the blood-brain barrier [4]Selectivity challenges due to high structural homology between parasite and host proteins [1]
06

Interacting drugs

Verapamil

8 more in the full profile.

07

Biomarkers

pfmdr1 gene copy numberABC transporter mRNA expression levelsP-glycoprotein surface expressionRhodamine 123 efflux capacity

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