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Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity

TAM receptors (Tyro-3, Axl, and Mertk) are a family of three homologous type I receptor tyrosine kinases that are implicated in several human malignancies. Overexpression of TAMs and their major ligand Growth arrest-specific factor 6 (Gas6) is associated with more aggressive staging of cancers, poor...

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Autores principales: Kimani, Stanley G., Kumar, Sushil, Bansal, Nitu, Singh, Kamalendra, Kholodovych, Vladyslav, Comollo, Thomas, Peng, Youyi, Kotenko, Sergei V., Sarafianos, Stefan G., Bertino, Joseph R., Welsh, William J., Birge, Raymond B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5341070/
https://www.ncbi.nlm.nih.gov/pubmed/28272423
http://dx.doi.org/10.1038/srep43908
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author Kimani, Stanley G.
Kumar, Sushil
Bansal, Nitu
Singh, Kamalendra
Kholodovych, Vladyslav
Comollo, Thomas
Peng, Youyi
Kotenko, Sergei V.
Sarafianos, Stefan G.
Bertino, Joseph R.
Welsh, William J.
Birge, Raymond B.
author_facet Kimani, Stanley G.
Kumar, Sushil
Bansal, Nitu
Singh, Kamalendra
Kholodovych, Vladyslav
Comollo, Thomas
Peng, Youyi
Kotenko, Sergei V.
Sarafianos, Stefan G.
Bertino, Joseph R.
Welsh, William J.
Birge, Raymond B.
author_sort Kimani, Stanley G.
collection PubMed
description TAM receptors (Tyro-3, Axl, and Mertk) are a family of three homologous type I receptor tyrosine kinases that are implicated in several human malignancies. Overexpression of TAMs and their major ligand Growth arrest-specific factor 6 (Gas6) is associated with more aggressive staging of cancers, poorer predicted patient survival, acquired drug resistance and metastasis. Here we describe small molecule inhibitors (RU-301 and RU-302) that target the extracellular domain of Axl at the interface of the Ig-1 ectodomain of Axl and the Lg-1 of Gas6. These inhibitors effectively block Gas6-inducible Axl receptor activation with low micromolar IC(50s) in cell-based reporter assays, inhibit Gas6-inducible motility in Axl-expressing cell lines, and suppress H1299 lung cancer tumor growth in a mouse xenograft NOD-SCIDγ model. Furthermore, using homology models and biochemical verifications, we show that RU301 and 302 also inhibit Gas6 inducible activation of Mertk and Tyro3 suggesting they can act as pan-TAM inhibitors that block the interface between the TAM Ig1 ectodomain and the Gas6 Lg domain. Together, these observations establish that small molecules that bind to the interface between TAM Ig1 domain and Gas6 Lg1 domain can inhibit TAM activation, and support the further development of small molecule Gas6-TAM interaction inhibitors as a novel class of cancer therapeutics.
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spelling pubmed-53410702017-03-10 Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity Kimani, Stanley G. Kumar, Sushil Bansal, Nitu Singh, Kamalendra Kholodovych, Vladyslav Comollo, Thomas Peng, Youyi Kotenko, Sergei V. Sarafianos, Stefan G. Bertino, Joseph R. Welsh, William J. Birge, Raymond B. Sci Rep Article TAM receptors (Tyro-3, Axl, and Mertk) are a family of three homologous type I receptor tyrosine kinases that are implicated in several human malignancies. Overexpression of TAMs and their major ligand Growth arrest-specific factor 6 (Gas6) is associated with more aggressive staging of cancers, poorer predicted patient survival, acquired drug resistance and metastasis. Here we describe small molecule inhibitors (RU-301 and RU-302) that target the extracellular domain of Axl at the interface of the Ig-1 ectodomain of Axl and the Lg-1 of Gas6. These inhibitors effectively block Gas6-inducible Axl receptor activation with low micromolar IC(50s) in cell-based reporter assays, inhibit Gas6-inducible motility in Axl-expressing cell lines, and suppress H1299 lung cancer tumor growth in a mouse xenograft NOD-SCIDγ model. Furthermore, using homology models and biochemical verifications, we show that RU301 and 302 also inhibit Gas6 inducible activation of Mertk and Tyro3 suggesting they can act as pan-TAM inhibitors that block the interface between the TAM Ig1 ectodomain and the Gas6 Lg domain. Together, these observations establish that small molecules that bind to the interface between TAM Ig1 domain and Gas6 Lg1 domain can inhibit TAM activation, and support the further development of small molecule Gas6-TAM interaction inhibitors as a novel class of cancer therapeutics. Nature Publishing Group 2017-03-08 /pmc/articles/PMC5341070/ /pubmed/28272423 http://dx.doi.org/10.1038/srep43908 Text en Copyright © 2017, The Author(s) 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
Kimani, Stanley G.
Kumar, Sushil
Bansal, Nitu
Singh, Kamalendra
Kholodovych, Vladyslav
Comollo, Thomas
Peng, Youyi
Kotenko, Sergei V.
Sarafianos, Stefan G.
Bertino, Joseph R.
Welsh, William J.
Birge, Raymond B.
Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity
title Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity
title_full Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity
title_fullStr Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity
title_full_unstemmed Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity
title_short Small molecule inhibitors block Gas6-inducible TAM activation and tumorigenicity
title_sort small molecule inhibitors block gas6-inducible tam activation and tumorigenicity
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5341070/
https://www.ncbi.nlm.nih.gov/pubmed/28272423
http://dx.doi.org/10.1038/srep43908
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