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The role of CD44 and ERM proteins in expression and functionality of P-glycoprotein in breast cancer cells
Authors
M Bebawy
SP Djordjevic
+4 more
R Jaiswal
JF Lu
MP Padula
D Pokharel
Publication date
1 March 2016
Publisher
'MDPI AG'
Doi
Cite
Abstract
© 2016 by the authors. Multidrug resistance (MDR) is often attributed to the over-expression of P-glycoprotein (P-gp), which prevents the accumulation of anticancer drugs within cells by virtue of its active drug efflux capacity. We have previously described the intercellular transfer of P-gp via extracellular vesicles (EVs) and proposed the involvement of a unique protein complex in regulating this process. In this paper, we investigate the role of these mediators in the regulation of P-gp functionality and hence the acquisition of MDR following cell to cell transfer. By sequentially silencing the FERM domain-binding proteins, Ezrin, Radixin and Moesin (ERM), as well as CD44, which we also report a selective packaging in breast cancer derived EVs, we have established a role for these proteins, in particular Radixin and CD44, in influencing the P-gp-mediated MDR in whole cells. We also report for the first time the role of ERM proteins in the vesicular transfer of functional P-gp. Specifically, we demonstrate that intercellular membrane insertion is dependent on Ezrin and Moesin, whilst P-gp functionality is governed by the integrity of all ERM proteins in the recipient cell. This study identifies these candidate proteins as potential new therapeutic targets in circumventing MDR clinically
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OPUS - University of Technology Sydney
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Multidisciplinary Digital Publishing Institute
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Directory of Open Access Journals
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Crossref
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info:doi/10.3390%2Fmolecules21...
Last time updated on 11/12/2019