Molecular pharmacology of ABCG2 and its role in chemoresistance
Alexandra E Stacy1, Patric J Jansson, Des R Richardson
1Molecular Pharmacology and Pathology Program, Department of Pathology and Bosch Institute, University of Sydney, Sydney, New South Wales, Australia.
Abstract:
The ATP-binding cassette, subfamily G, isoform 2 protein (ABCG2) is an important member of the ABC transporter superfamily, which has been suggested to be involved in multidrug resistance (MDR) in cancer. Its diverse range of substrates includes many common chemotherapeutics such as imatinib, doxorubicin, and mitoxantrone. Physiologically, ABCG2 is highly expressed in areas such as the blood-brain barrier and gastrointestinal tract, where it is thought to play a role in protection against xenobiotic exposure. High ABCG2 expression has also been found in a variety of solid tumors and in hematologic malignancies and has been correlated with poorer clinical outcomes. Furthermore, ABCG2 expression is a characteristic feature of cancer stem cells, which are able to self-renew and differentiate. These cancer stem cells have been postulated to play an important role in MDR, where their inherent ABCG2 expression may allow them to survive chemotherapy and repopulate the tumor after exposure to chemotherapeutics. This observation raises the exciting possibility that by inhibiting ABCG2, cancer stem cells and other cancers may be targeted and eradicated, at which point conventional chemotherapeutics would be sufficient to eliminate the remaining tumor cells. Inhibitors of ABCG2, such as tyrosine kinase inhibitors, phosphodiesterase-5 inhibitors, and the fumitremorgin-type indolyl diketopiperazine, Ko143 [(3S,6S,12aS)-1,2,3,4,6,7,12,12a-octahydro-9-methoxy-6-(2-methylpropyl)-1,4-dioxopyrazino[1',2':1,6]pyrido[3,4-b]indole-3-propanoic acid 1,1-dimethylethyl ester], could potentially be used for this purpose. However, these agents are still awaiting comprehensive clinical assessment.
Insights
The ATP-binding cassette, subfamily G, isoform 2 protein (ABCG2) is implicated in multidrug resistance and cancer stem cell survival. Inhibiting ABCG2 may enhance chemotherapy efficacy against various cancers.
Area of Science:
- Biochemistry
- Oncology
- Pharmacology
Background:
- The ATP-binding cassette, subfamily G, isoform 2 protein (ABCG2) is a transporter protein implicated in multidrug resistance (MDR) in cancer.
- ABCG2 is expressed in various tissues and tumors, correlating with poor clinical outcomes and identifying cancer stem cells.
Purpose of the Study:
- To explore the role of ABCG2 in cancer and its potential as a therapeutic target.
- To investigate the possibility of using ABCG2 inhibitors to overcome MDR and eradicate cancer stem cells.
Main Methods:
- Review of existing literature on ABCG2 function, expression, and its role in cancer.
- Identification of potential ABCG2 inhibitors, including tyrosine kinase inhibitors, PDE5 inhibitors, and fumitremorgin-type compounds like Ko143.
Main Results:
- ABCG2 mediates resistance to numerous chemotherapeutics and is a marker for cancer stem cells.
- Cancer stem cells expressing ABCG2 may survive chemotherapy and contribute to tumor recurrence.
- Several classes of compounds, including Ko143, show potential as ABCG2 inhibitors.
Conclusions:
- Targeting ABCG2 offers a promising strategy to enhance conventional chemotherapy effectiveness.
- Inhibiting ABCG2 could potentially eradicate cancer stem cells, preventing tumor repopulation and improving patient outcomes.
- Further clinical assessment of ABCG2 inhibitors is necessary to validate their therapeutic potential.
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