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Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma

Aberrant expression of proteins involved in cell division is a constant feature in multiple myeloma (MM), especially in high-risk disease. Increasingly, therapy of myeloma is moving towards individualization based on underlying genetic abnormalities. Aurora kinases are important mediators of cell cy...

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Autores principales: Painuly, Utkarsh, Ramakrishnan, Vijay, Kimlinger, Teresa, Wellik, Linda, Haug, Jessica, Gonsalves, Wilson, Bi, Lintao, Huang, Zhongxia, Rajkumar, S. Vincent, Kumar, Shaji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195373/
https://www.ncbi.nlm.nih.gov/pubmed/30349651
http://dx.doi.org/10.18632/oncotarget.26180
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author Painuly, Utkarsh
Ramakrishnan, Vijay
Kimlinger, Teresa
Wellik, Linda
Haug, Jessica
Gonsalves, Wilson
Bi, Lintao
Huang, Zhongxia
Rajkumar, S. Vincent
Kumar, Shaji
author_facet Painuly, Utkarsh
Ramakrishnan, Vijay
Kimlinger, Teresa
Wellik, Linda
Haug, Jessica
Gonsalves, Wilson
Bi, Lintao
Huang, Zhongxia
Rajkumar, S. Vincent
Kumar, Shaji
author_sort Painuly, Utkarsh
collection PubMed
description Aberrant expression of proteins involved in cell division is a constant feature in multiple myeloma (MM), especially in high-risk disease. Increasingly, therapy of myeloma is moving towards individualization based on underlying genetic abnormalities. Aurora kinases are important mediators of cell cycle and are up regulated in MM. Functional loss of Aurora kinases results in genetic instability and dysregulated division leading to cellular aneuploidy and growth arrest. We investigated the role of Aurora kinase inhibition in MM, using a small molecule inhibitor A1014907. Low nanomolar A1014907 concentrations induced aneuploidy in MM cell lines independent of underlying cytogenetic abnormalities by inhibiting Aurora Kinases. However, A1014907 induced more pronounced and dose dependent apoptosis in cell lines with t(4;14) translocation. Translocation t(4;14) is observed in about 15% of patients with MM leading to constitutive activation of FGFR3 in two-thirds of these patients. Further investigation of the mechanism of action of A1014907 revealed potent FGFR3 pathway inhibition only in the sensitive cell lines. Thus, our results show that aurora kinase inhibition causes cell cycle arrest and aneuploidy with minimal apoptosis whereas inhibiting both aurora kinase and FGFR3 activity induced potent apoptosis in MM cells. These results support clinical evaluation of A1014907 in MM patients with t(4;14) translocation and/or FGFR3 expression.
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spelling pubmed-61953732018-10-22 Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma Painuly, Utkarsh Ramakrishnan, Vijay Kimlinger, Teresa Wellik, Linda Haug, Jessica Gonsalves, Wilson Bi, Lintao Huang, Zhongxia Rajkumar, S. Vincent Kumar, Shaji Oncotarget Research Paper Aberrant expression of proteins involved in cell division is a constant feature in multiple myeloma (MM), especially in high-risk disease. Increasingly, therapy of myeloma is moving towards individualization based on underlying genetic abnormalities. Aurora kinases are important mediators of cell cycle and are up regulated in MM. Functional loss of Aurora kinases results in genetic instability and dysregulated division leading to cellular aneuploidy and growth arrest. We investigated the role of Aurora kinase inhibition in MM, using a small molecule inhibitor A1014907. Low nanomolar A1014907 concentrations induced aneuploidy in MM cell lines independent of underlying cytogenetic abnormalities by inhibiting Aurora Kinases. However, A1014907 induced more pronounced and dose dependent apoptosis in cell lines with t(4;14) translocation. Translocation t(4;14) is observed in about 15% of patients with MM leading to constitutive activation of FGFR3 in two-thirds of these patients. Further investigation of the mechanism of action of A1014907 revealed potent FGFR3 pathway inhibition only in the sensitive cell lines. Thus, our results show that aurora kinase inhibition causes cell cycle arrest and aneuploidy with minimal apoptosis whereas inhibiting both aurora kinase and FGFR3 activity induced potent apoptosis in MM cells. These results support clinical evaluation of A1014907 in MM patients with t(4;14) translocation and/or FGFR3 expression. Impact Journals LLC 2018-10-02 /pmc/articles/PMC6195373/ /pubmed/30349651 http://dx.doi.org/10.18632/oncotarget.26180 Text en Copyright: © 2018 Painuly et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Painuly, Utkarsh
Ramakrishnan, Vijay
Kimlinger, Teresa
Wellik, Linda
Haug, Jessica
Gonsalves, Wilson
Bi, Lintao
Huang, Zhongxia
Rajkumar, S. Vincent
Kumar, Shaji
Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
title Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
title_full Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
title_fullStr Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
title_full_unstemmed Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
title_short Aurora kinase and FGFR3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
title_sort aurora kinase and fgfr3 inhibition results in significant apoptosis in molecular subgroups of multiple myeloma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6195373/
https://www.ncbi.nlm.nih.gov/pubmed/30349651
http://dx.doi.org/10.18632/oncotarget.26180
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