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Updated: Apr 26, 2026

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Published on: May 27, 2016
Determinants of the activity and substrate recognition of breast cancer resistance protein (ABCG2)
Milena Julia Szafraniec1, Małgorzata Szczygieł, Krystyna Urbanska
1Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University , Krakow , Poland.
Abstract:
The xenobiotic transporters are among the most important constituents of detoxification system in living organisms. Breast cancer resistance protein (BCRP/ABCG2) is one of the major transporters involved in the efflux of xenobiotics. To understand its role in chemotherapeutic and multidrug resistance, it is crucial to establish the determinants of its substrate specificity, which obviously is of high relevance for successful therapy of many diseases. This article summarizes the current knowledge about the substrate preferences of BCRP. We overview the factors which determine its activity, inhibition and substrate recognition, focusing on the structural features of the transporter. BCRP substrate specificity is quite low as it interacts with a spectrum of substances with only a few common features: hydrophobic and aromatic regions, possibly a flat conformation and the metal ion-, oxygen- and nitrogen-containing functionalities, most of which may be the donors/acceptors of H-bonds. Several amino acid residues and structural motifs are responsible for BCRP activity and substrate recognition. Thus, the active form of BCRP, at least a dimer or a larger oligomer is maintained by intramolecular disulfide bridge that involves Cys(603) residues. The GXXXG motif in transmembrane helix 1, Cys residues, Arg(482) and Lys(86) are responsible for maintaining the protein structure, which confers transport activity, and the His(457) or Arg(456) residues are directly involved in substrate binding. Arg(482) does not directly bind substrates, but electrostatically interacts with charged molecules, which initiates the conformational changes that transmit the signal from the transmembrane regions to the ABC domain.
Insights
Breast cancer resistance protein (BCRP/ABCG2) is a key detoxification transporter. Understanding its substrate specificity is vital for improving cancer therapy and overcoming multidrug resistance.
Area of Science:
- Biochemistry
- Molecular Biology
- Pharmacology
Background:
- Xenobiotic transporters are crucial for detoxification.
- Breast cancer resistance protein (BCRP/ABCG2) is a major efflux transporter.
- Understanding BCRP substrate specificity is key for cancer therapy and multidrug resistance.
Purpose of the Study:
- To summarize current knowledge on BCRP substrate preferences.
- To review factors influencing BCRP activity, inhibition, and substrate recognition.
- To focus on the structural features determining BCRP function.
Main Methods:
- Review of existing literature on BCRP.
- Analysis of structural features and amino acid residues involved in BCRP function.
- Focus on substrate recognition determinants.
Main Results:
- BCRP exhibits low substrate specificity, interacting with diverse compounds.
- Common substrate features include hydrophobic/aromatic regions and specific functional groups.
- Key amino acid residues (e.g., Cys(603), Arg(482), Lys(86), His(457)/Arg(456)) and motifs (GXXXG) are critical for BCRP structure and activity.
- Arg(482) plays a role in initiating conformational changes through electrostatic interactions.
Conclusions:
- BCRP's broad substrate specificity is influenced by its structural features.
- Specific amino acid residues and motifs are essential for BCRP's transport activity and substrate binding.
- Further understanding of BCRP structure-function relationships can aid in therapeutic strategies.
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