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A phosphotyrosine switch regulates organic cation transporters

Membrane transporters are key determinants of therapeutic outcomes. They regulate systemic and cellular drug levels influencing efficacy as well as toxicities. Here we report a unique phosphorylation-dependent interaction between drug transporters and tyrosine kinase inhibitors (TKIs), which has unc...

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Autores principales: Sprowl, Jason A., Ong, Su Sien, Gibson, Alice A., Hu, Shuiying, Du, Guoqing, Lin, Wenwei, Li, Lie, Bharill, Shashank, Ness, Rachel A., Stecula, Adrian, Offer, Steven M., Diasio, Robert B., Nies, Anne T., Schwab, Matthias, Cavaletti, Guido, Schlatter, Eberhard, Ciarimboli, Giuliano, Schellens, Jan H. M., Isacoff, Ehud Y., Sali, Andrej, Chen, Taosheng, Baker, Sharyn D., Sparreboom, Alex, Pabla, Navjotsingh
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4799362/
https://www.ncbi.nlm.nih.gov/pubmed/26979622
http://dx.doi.org/10.1038/ncomms10880
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author Sprowl, Jason A.
Ong, Su Sien
Gibson, Alice A.
Hu, Shuiying
Du, Guoqing
Lin, Wenwei
Li, Lie
Bharill, Shashank
Ness, Rachel A.
Stecula, Adrian
Offer, Steven M.
Diasio, Robert B.
Nies, Anne T.
Schwab, Matthias
Cavaletti, Guido
Schlatter, Eberhard
Ciarimboli, Giuliano
Schellens, Jan H. M.
Isacoff, Ehud Y.
Sali, Andrej
Chen, Taosheng
Baker, Sharyn D.
Sparreboom, Alex
Pabla, Navjotsingh
author_facet Sprowl, Jason A.
Ong, Su Sien
Gibson, Alice A.
Hu, Shuiying
Du, Guoqing
Lin, Wenwei
Li, Lie
Bharill, Shashank
Ness, Rachel A.
Stecula, Adrian
Offer, Steven M.
Diasio, Robert B.
Nies, Anne T.
Schwab, Matthias
Cavaletti, Guido
Schlatter, Eberhard
Ciarimboli, Giuliano
Schellens, Jan H. M.
Isacoff, Ehud Y.
Sali, Andrej
Chen, Taosheng
Baker, Sharyn D.
Sparreboom, Alex
Pabla, Navjotsingh
author_sort Sprowl, Jason A.
collection PubMed
description Membrane transporters are key determinants of therapeutic outcomes. They regulate systemic and cellular drug levels influencing efficacy as well as toxicities. Here we report a unique phosphorylation-dependent interaction between drug transporters and tyrosine kinase inhibitors (TKIs), which has uncovered widespread phosphotyrosine-mediated regulation of drug transporters. We initially found that organic cation transporters (OCTs), uptake carriers of metformin and oxaliplatin, were inhibited by several clinically used TKIs. Mechanistic studies showed that these TKIs inhibit the Src family kinase Yes1, which was found to be essential for OCT2 tyrosine phosphorylation and function. Yes1 inhibition in vivo diminished OCT2 activity, significantly mitigating oxaliplatin-induced acute sensory neuropathy. Along with OCT2, other SLC-family drug transporters are potentially part of an extensive ‘transporter-phosphoproteome' with unique susceptibility to TKIs. On the basis of these findings we propose that TKIs, an important and rapidly expanding class of therapeutics, can functionally modulate pharmacologically important proteins by inhibiting protein kinases essential for their post-translational regulation.
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spelling pubmed-47993622016-03-23 A phosphotyrosine switch regulates organic cation transporters Sprowl, Jason A. Ong, Su Sien Gibson, Alice A. Hu, Shuiying Du, Guoqing Lin, Wenwei Li, Lie Bharill, Shashank Ness, Rachel A. Stecula, Adrian Offer, Steven M. Diasio, Robert B. Nies, Anne T. Schwab, Matthias Cavaletti, Guido Schlatter, Eberhard Ciarimboli, Giuliano Schellens, Jan H. M. Isacoff, Ehud Y. Sali, Andrej Chen, Taosheng Baker, Sharyn D. Sparreboom, Alex Pabla, Navjotsingh Nat Commun Article Membrane transporters are key determinants of therapeutic outcomes. They regulate systemic and cellular drug levels influencing efficacy as well as toxicities. Here we report a unique phosphorylation-dependent interaction between drug transporters and tyrosine kinase inhibitors (TKIs), which has uncovered widespread phosphotyrosine-mediated regulation of drug transporters. We initially found that organic cation transporters (OCTs), uptake carriers of metformin and oxaliplatin, were inhibited by several clinically used TKIs. Mechanistic studies showed that these TKIs inhibit the Src family kinase Yes1, which was found to be essential for OCT2 tyrosine phosphorylation and function. Yes1 inhibition in vivo diminished OCT2 activity, significantly mitigating oxaliplatin-induced acute sensory neuropathy. Along with OCT2, other SLC-family drug transporters are potentially part of an extensive ‘transporter-phosphoproteome' with unique susceptibility to TKIs. On the basis of these findings we propose that TKIs, an important and rapidly expanding class of therapeutics, can functionally modulate pharmacologically important proteins by inhibiting protein kinases essential for their post-translational regulation. Nature Publishing Group 2016-03-16 /pmc/articles/PMC4799362/ /pubmed/26979622 http://dx.doi.org/10.1038/ncomms10880 Text en Copyright © 2016, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article's Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Sprowl, Jason A.
Ong, Su Sien
Gibson, Alice A.
Hu, Shuiying
Du, Guoqing
Lin, Wenwei
Li, Lie
Bharill, Shashank
Ness, Rachel A.
Stecula, Adrian
Offer, Steven M.
Diasio, Robert B.
Nies, Anne T.
Schwab, Matthias
Cavaletti, Guido
Schlatter, Eberhard
Ciarimboli, Giuliano
Schellens, Jan H. M.
Isacoff, Ehud Y.
Sali, Andrej
Chen, Taosheng
Baker, Sharyn D.
Sparreboom, Alex
Pabla, Navjotsingh
A phosphotyrosine switch regulates organic cation transporters
title A phosphotyrosine switch regulates organic cation transporters
title_full A phosphotyrosine switch regulates organic cation transporters
title_fullStr A phosphotyrosine switch regulates organic cation transporters
title_full_unstemmed A phosphotyrosine switch regulates organic cation transporters
title_short A phosphotyrosine switch regulates organic cation transporters
title_sort phosphotyrosine switch regulates organic cation transporters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4799362/
https://www.ncbi.nlm.nih.gov/pubmed/26979622
http://dx.doi.org/10.1038/ncomms10880
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