Author(s) |
Lu, Jamie F
Pokharel, Deep
Bebawy, Mary
|
Publication Date |
2017
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Abstract |
<p>P-glycoprotein (P-gp/<i>ABCB1</i>) and multidrug resistance-associated protein 1 (MRP1/<i>ABCC1</i>) are the main drug efflux transporters associated with treatment failure in cancer. Much attention has been focused on the molecular mechanisms regulating the expression of these transporters as a viable approach for identifying novel drug targets in circumventing cancer multidrug resistance (MDR) clinically. In this paper, we examine the role of miR-326 in the context of its intercellular transfer between cancer cells by extracellular membrane vesicles called microparticles (MPs). We observe that cellular suppression of <i>ABCC1</i> by miR-326 is modulated by the presence of <i>ABCB1</i> transcript. Specifically, we show that siRNA silencing of MP-transferred <i>ABCB1</i> transcript reverses the knockdown effects of miRNA-326 on target MRP1/<i>ABCC1</i> transcripts. We also demonstrate a dominance of <i>ABCB1</i> transcripts when co-localized with <i>ABCC1</i> transcripts, which is consistent with the facilitation of miR-326 function by <i>ABCB1</i>. This study identifies a novel pathway regulating the expression of ABC transporters and positions <i>ABCB1</i> mRNA as a transcriptional regulator of other members of this superfamily in multidrug resistant cells through its actions on miRNAs.</p>
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Citation |
Drug Delivery and Translational Research, v.7, p. 276-285
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ISSN |
2190-3948
2190-393X
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Link | |
Language |
en
|
Publisher |
Springer
|
Title |
A novel mechanism governing the transcriptional regulation of ABC transporters in MDR cancer cells
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Type of document |
Journal Article
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Entity Type |
Publication
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