Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase.
Oncogenic mutation of the RET receptor tyrosine kinase is observed in several human malignancies. Here, we describe three novel type II RET tyrosine kinase inhibitors (TKI), ALW-II-41-27, XMD15-44 and HG-6-63-01, that inhibit the cellular activity of oncogenic RET mutants at two digit nanomolar conc...
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2015-01-01
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doaj-d9d2d4a9cf564887b6516be9d95a74652020-11-25T02:13:35ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-01106e012836410.1371/journal.pone.0128364Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase.Marialuisa MocciaQingsong LiuTeresa GuidaGiorgia FedericoAnnalisa BresciaZheng ZhaoHwan Geun ChoiXianming DengLi TanJinhua WangMarc BillaudNathanael S GrayFrancesca CarlomagnoMassimo SantoroOncogenic mutation of the RET receptor tyrosine kinase is observed in several human malignancies. Here, we describe three novel type II RET tyrosine kinase inhibitors (TKI), ALW-II-41-27, XMD15-44 and HG-6-63-01, that inhibit the cellular activity of oncogenic RET mutants at two digit nanomolar concentration. These three compounds shared a 3-trifluoromethyl-4-methylpiperazinephenyl pharmacophore that stabilizes the 'DFG-out' inactive conformation of RET activation loop. They blocked RET-mediated signaling and proliferation with an IC50 in the nM range in fibroblasts transformed by the RET/C634R and RET/M918T oncogenes. They also inhibited autophosphorylation of several additional oncogenic RET-derived point mutants and chimeric oncogenes. At a concentration of 10 nM, ALW-II-41-27, XMD15-44 and HG-6-63-01 inhibited RET kinase and signaling in human thyroid cancer cell lines carrying oncogenic RET alleles; they also inhibited proliferation of cancer, but not non-tumoral Nthy-ori-3-1, thyroid cells, with an IC50 in the nM range. The three compounds were capable of inhibiting the 'gatekeeper' V804M mutant which confers substantial resistance to established RET inhibitors. In conclusion, we have identified a type II TKI scaffold, shared by ALW-II-41-27, XMD15-44 and HG-6-63-01, that may be used as novel lead for the development of novel agents for the treatment of cancers harboring oncogenic activation of RET.http://europepmc.org/articles/PMC4457528?pdf=render |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marialuisa Moccia Qingsong Liu Teresa Guida Giorgia Federico Annalisa Brescia Zheng Zhao Hwan Geun Choi Xianming Deng Li Tan Jinhua Wang Marc Billaud Nathanael S Gray Francesca Carlomagno Massimo Santoro |
spellingShingle |
Marialuisa Moccia Qingsong Liu Teresa Guida Giorgia Federico Annalisa Brescia Zheng Zhao Hwan Geun Choi Xianming Deng Li Tan Jinhua Wang Marc Billaud Nathanael S Gray Francesca Carlomagno Massimo Santoro Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase. PLoS ONE |
author_facet |
Marialuisa Moccia Qingsong Liu Teresa Guida Giorgia Federico Annalisa Brescia Zheng Zhao Hwan Geun Choi Xianming Deng Li Tan Jinhua Wang Marc Billaud Nathanael S Gray Francesca Carlomagno Massimo Santoro |
author_sort |
Marialuisa Moccia |
title |
Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase. |
title_short |
Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase. |
title_full |
Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase. |
title_fullStr |
Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase. |
title_full_unstemmed |
Identification of Novel Small Molecule Inhibitors of Oncogenic RET Kinase. |
title_sort |
identification of novel small molecule inhibitors of oncogenic ret kinase. |
publisher |
Public Library of Science (PLoS) |
series |
PLoS ONE |
issn |
1932-6203 |
publishDate |
2015-01-01 |
description |
Oncogenic mutation of the RET receptor tyrosine kinase is observed in several human malignancies. Here, we describe three novel type II RET tyrosine kinase inhibitors (TKI), ALW-II-41-27, XMD15-44 and HG-6-63-01, that inhibit the cellular activity of oncogenic RET mutants at two digit nanomolar concentration. These three compounds shared a 3-trifluoromethyl-4-methylpiperazinephenyl pharmacophore that stabilizes the 'DFG-out' inactive conformation of RET activation loop. They blocked RET-mediated signaling and proliferation with an IC50 in the nM range in fibroblasts transformed by the RET/C634R and RET/M918T oncogenes. They also inhibited autophosphorylation of several additional oncogenic RET-derived point mutants and chimeric oncogenes. At a concentration of 10 nM, ALW-II-41-27, XMD15-44 and HG-6-63-01 inhibited RET kinase and signaling in human thyroid cancer cell lines carrying oncogenic RET alleles; they also inhibited proliferation of cancer, but not non-tumoral Nthy-ori-3-1, thyroid cells, with an IC50 in the nM range. The three compounds were capable of inhibiting the 'gatekeeper' V804M mutant which confers substantial resistance to established RET inhibitors. In conclusion, we have identified a type II TKI scaffold, shared by ALW-II-41-27, XMD15-44 and HG-6-63-01, that may be used as novel lead for the development of novel agents for the treatment of cancers harboring oncogenic activation of RET. |
url |
http://europepmc.org/articles/PMC4457528?pdf=render |
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